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IGP 19-319-37 193/ 4 Tarver fan LR > 181 1904 * Milo, abt 24°095-F2 7 C acaba \ Aelegdes pea — Meh, eat; (ohn, Webi [Beef idbibh 60:597-62¢ (capo). Vee Nut tious, Der VBP 79°C [Say Pe fashion 3% bow GO: 37 &b 15 70. Hnpecovet)- “ 60:225-3F (lizs) ber progoct. Kap trn 1 tboden 2-3 > pape SOS La CDI bm nhl, ksbteg stag sracn Pele, H. 2, xcs Meare Uasselr. Hot. Motus wrk, ptm ro" “ 74: B/7-19 (41). mnee. L. bet Kay, lot: Fo 62 (cae). Crbelic cur Maulana pclae ~ tere r tel & ~~ OSS, FE Hotes, Jan Mest Cosel 28:VP 1940 RAx LE rorev us Kors Ba pomeval, Neg phefiaiah 1 8 - the (grcakon, heber LF. + Haror J. (74 a) CHest Medlil mefebret on Ay dred Traces - bach |. 32: 299- 30 /. [he ator cant! youl lin a cab urbucl, ; eel pocrvet, wauthaabaih leat ‘; my a is . harniucoler : es , G Stor in” oe . fom al sss bg ine — on inked Wesel deevcseel sole x” Mba, Ete (ing). j Mgnt Co Cy (90. 269 = 387 + Parca, & tat ls Yo- urlal in sent tol | Pe. thy hh ftir h + WW harlt, /F. Wadd | gn i aa Upcbabhin Bee Ulam” dau, Ore of. arte. eftyfec pecaticelns 4 daa in aatecbe pend aa Fanti ; > Fon site fi. BY plbrS waperdca ma hs L, dt cane “LA . . . V4 12 ha» et. bet Heer epicant oT (at LA ° RL ga telintl, le, Os Gives Ga ae 5 ou te te a tenske aimee al tle sf tor (Sf on ave oy *y Age po t eued ! anol he TO Cora! phe hae then Piharrasons (191 1) Peek 3. 94.382 ~ Woe bee larssl past 2 f blll Er Canale do h fahny technic barge het q r. 52: Bo 14) oper (rer) 72:26 (145) ALAS ia il Leg Agel Ze alo a do The. |p yael Bry 26 — < Face An ive re ta be oo asus Las heel tg fet Vo Ween bless tb atiey LAC Sh: sof} - (1934) 5 BO: 33 3BG re JGR 19,229 NC M3 Pm Gclese alin. Ua fas: adop ‘1... / SH. thle se blo, > 7S Leber ¢ ‘tod fp a ber. Wee bO ete / y a So , oc cop i Algted et Aeveiee raul bd re 3 led Loan, le clove; 14 one akon: e a S4 . at ae hype ~. 2 co, be ye Cot hy, Oy Gy Le (ers Rid tL ‘ ( it OF, f hap At, | t lac eso f - Fe ¢ one ale teats eel pee C1 he 4 . es fee To al, fe dren T eee 4 Weyr G- ds lon.s lice. Apt pecs fog ada pled Ju lh, ) WoL. (1947) | deli ableate, y Pal uR _* hs tegapt-adicoh, tr. heb, Vaeork 12:2 -2P. Mele fda del ust guireart tobins acid glsbce usb [bortry Te L tebf heres theuned ace p Lecases : : “eit Mecemneirero ¢ we bag | bef + font iatede heh M1 C we (PAALA , Jor Cesare wn mgt _ gh pct setae ge S a). — tauseel b) § Werbrany, O. + Chuva, Ww. | 192) twas a Massllrgte, Los. Ainaangfosnt Caplan Beat 5. 3/0: FY ~ 421. CH,OH CH cHo-P —-Hig ~> _ ; Wp Cc-oP Coot PGA Epp - Ufa Sp eg et ? fee werd 6./ x07 7.>Y. . tt | 7 ic ne) iy Lap i tr vl ches > hind p° Ma My dingle ces abt hiatal from Cis pT GP PR Mf - om A pleces “f 37 aff * ced Wher the (med © Me (pa at fp) hee 2aeAre vadug , able, 4) nar. c "4 > [fo ; a. adel ling whe ae beaf yo 4. 4 > fp -fA vy Le O Dp” Books bei ory 3 A r / C /* ) i / if j Are, Khar Ko plesplal . aa ay hawgdre tt CQ acd rh y wo lf nn v wh ; «hy ie s oy 5 “4 oe é pe ots van ey ie Led ue ee - oe ir oe é ; ch ( i 7 Ms 7 . roy i f : - be ‘ ey ! “y ‘ ; f : lav Pei hee 12. “yy he! ig) uh O yO a Tees Q a he, ‘ag 1 Tow ue j EC / i a a uf fee t \ 4 ] fo / j oy ar as meee (1904) sca Drs ene ey aeenner TO? MK Mek wond he meted See I. IT. Iit The utLiization of lactose by Escherichia coli-mutabile. Deere,C.J., Dikaney, Anna De, and Michelson, I.D. J. Bact. 31: 625-633 (1936). White form of Ecm uses very little lactose (determined as reducing sugar with Cu) before the red forms appear. NH, production indicates that amino acids are used as C source &f lactose is vailable The lactase activity of Escherichia coli-mutabile. ib. 37: 355-363 (1939). Used Shaffer-Somogyi (JBC 100:695-713 '33) method, with Reagent # 50 and 15 minutes heating. Thymol used to sterilize heavy cell suspensions (req. 1 hr.) Dry cells prepared after Morrison & Hisey (JBC 117: 6943-706). Substrate was 50 ml 3% lactose in 1% acacia an M/10 P buffer 7.0-7.2. Dried cells suspended in 25 ml 2% acacia in .2M P buffer, 10-20 mg thymol added and incub. 37 1-1} h. 25 ce. 1% lactose added, and samples taken for analysis. «01% Cu used to stop enzyme action. Activity expressed as u- 205 mg lactose split / 12 h/ mg. Lacy grown on lactose had activity ca 2.8 ig grown on lactose; 0.2 on plain agar, O.1 on glucose. Lac- had activity of 1.0 on lactose, etc. on others. No dif- ference whether dried or not. These values characterize the Lac- itself, as no Lac/ were seen at this interval, on Endo(ts agar. On the activation of the lactase of Escherichia coli-mrtabile. Deere, C.J. Je Bact. 37: 473-483. "Earlier experiments led us to believe that the antiseptics employed "activated" the lactase which was present, but inactive, in living growing cultures of the non-lactose~fermening (white) form." Later found that drying would also activate lactase while only partially inhibiting glycolysis, so that Qoo might increase Garrett white: /plain agar: Wet: Lac 11.7 Dry: 307 Glu 139 91.7 /Lac Wet: Lac 19 72.6 Glu 136 132 -- 9 Red: /plain Lac 1922 42.3 Glu 117 88.9 Red: /Lac Lac 128 1.8 This prep. was obvi- Glu =~ 1.9 ously overdried. — 7 but may have been Ex tracts of dried cells contained demonstrable lactase. too acid. No valid test was made of the possibility of lactase activation in Lac’, but he concluded that adaptation was based upon increased permeability rather than increased enzyme. rawtleg) obovate Poké | 118 Gnaes Hegtd Yew aan ogee y. fx. Jo bl 5 A, Hh ay Kean | pagoda” able (07 sleet) pn. (pH 6.8?) Pe ee /O f Ky Ht Poy iS NViatl Ss Fe Soy f Oye Qe HT ware He, Spromeris etlood the joel ad NS dee Yuclnug A Deg edegen 1245 } Serge +) PAST 45 ta 0 s lang Mapdege 118 7 Fedey « / ma +O {10 | JOA S687 ont JO |10 57:73 att tliat; . pa7 — Me S “ti 5 Thee VAY Adz Walrttervar : la 2 Pe a fpr Re fo 4-10 dau 30°. Ftd, o gnrth vole | ; - 4) poets pene " tk 104." binds " ( ¥80 + per. Pima) bel EERO eek hid Fite pall, Hat Williams Sunith, He (aya) ees gata on the tiping f stgeh, T. The o1 on ane nature lozoeed oy me aus of ba zferso tree JG Yh PS. pet conaullne + Ha » ans were ecaleed . Masaey alee Sieg ih ope Ft JE fal f ur case a Sia th, H. (mye) The. asgiat Learese Le a lune aplaghecale tyr neg orton: tg bine a) Mix ald.) + 50 » sad Te pect weber ty) hal ey N\ y “ 0 lip) J. (oer He -12y. The Aa Leuagriaye- poe ted bald apetnarpanse 3 % L. Barthes . bcc r. cablair buekal % 16? Jo nina Ure , We tN EG ob the EG 2, 0 menhcr #19 (de hog ) Spo ctrerimetel 90° anol "Ml extorees 3, eet ( a‘ en aurarured 40° fd. or [00 Ssmer. Reels ar Lercleek toemert pod porvsalion je OA. 20:57. Dis 1b) Flu,P.C., (1938). Etude sur le bacteriophage du Bacterium megatherium. Ann inst Past 60, 610-632. From summary: Used de Jong's 899 as lysogenic; 338 as indicator. a) found less phage than bacteria, ig contrast to Wollmans b) very young cultures carry phage alsp, but saline destroys the phage and prevents its filtrability. Wollman,E. and Wollman,E., (1938) Recherches sur le phenomene de Twort—d'Herelle. V. (Bacteriophagie ou autolyse hersdo-contangieuse). Ann inst Past 60, 13-57. (ee ta > -— eter anced as cet. DEL, Af pucate ee itatios he ples” ide Uno yy vr’ Burnet,F.M. & McKie,M. (1929). Observations on a permanently byw lysogenic strain of RB. enteri¥ifis Gaertner. AJMS 6:2760-284. Lysogenécity determined by growing test strain with indica- tor, heating to 56 for 30 mins to kilt bacteria and plating on indicator for plaques. Titers of 10/ - 10% often obtained in most 1sokates; others showed 103-104, Repeated washing continued to Liberate phage. After almost exhaus- tive washing with saline, distilled water liberated additional large quantities of phaggy Lysis by other phages diminished the yield. lysogenétity was found to bepermanent ° "The permanence of the lysogenic character makes it necessary to assume the presence of bacteriophage or its anlage in every cell of the culture,i.e., it hs part of the hereditary constitution of the strain. Rough enteritids produces the phage although it will lyse inly smooth cultures of other organisms. A mucoid resistant variant of the enteritidis to phage 13 was found to be lysogenic of 13 as well as for gallinarum. The mucoid strain was unstable and gave off rough and smooth colonies. ib. Type differences amongst staphylococcal bacteriophages. 6:21-31. 4 phages found for a white coccus "SF". Some resiatant variants were aureus pigmented, but nonpathegenec. (Among the phages was C-C!- see induced lysogenicity.) /B is C-resistant. } Seanad ‘92 2 ‘ ?f> SF BS AreD 4 (ess Gre han PP 9/2 sd D) Z fa oe Cena db A : ‘ele FP moss, bbe wy cnet “14 >, nelly, > tae, eacdanes : 1 . Lf fp area. uelroe . ‘ chtat, Pe Ag ee? of Mnf 72° pus lo + Ay ong, hh Part IF SOC. ; Co, NPB 33: 677 tar tictides ad [> Lé cont LAL A6“at: ly fy fu VILELYEL ws - A ,2, NV. A+ ax pete: for rrmcole .. c Baer det EAA Dy LAL OR eeR. , Aey, L thew? Via Mo prbiucr Dap aye? 2 A vert. LD . : ‘ctu. vio acti, Ar pa A). AY (aye. fom real Ad yh Meets tAte eed SeS itis aick / ritiutltes . Bite mea ly hae 2) rte Tr? Cerin g aff eta Le pod pees © tts Che, Beery LUA fey ceet, ree walasg Ayn! gee (2) yor 1 ‘ > a PY , . a . A bal ie People ~!oeochbds BPTI " Conepaten’ aeepaldn 5/F pops for srucrthr otras meg, Ay. Py AG TA Leq fr lgpla se. ty ph. duo CF | 2) edn PALCAGL | cl. 44 laced ty pene Zz. — onl pe > } FTA wel - Hi in (€. 7 Conga) also - > yacord WY a5e x seed oqeead + srnel! fo he ae “et ‘ = Lens eedlda) tr eth, oJ = om ne Ravage f actin vet chiar é. 5. tae beatin, “Use > ‘lf Raniet + fuel ( 1986.) 14:27 - 32. X- resistance Abvoopp tion bay heat billed ¢ ells Culture A B ec «€ 0 Aal cf c! SF + + + + + #¢# +4+4- ++ se /c t t - ~ + £¢ ~ ~ Se[e + - - =~ + +£ = _ SE awd SFie on arate ath, thetical , sje Aastuct. . ‘LY -f ; os fe : . ~ uy SF oped) feck hearts mm kewie -, no lowe 7 ter Cwiiee , bret oF fe poe. SF + pd , then prea c’ MOO (ae eo eee OF cevbliiane of hint - frp pr beet qT i a Cc a ay Ahi callie, Z se/e, ea ra t SO "Yo | SF fe | fal rryeareeedl Mpaaptace . Sit coe kl web he. “Ee tg “F wily C Acrusy. s/c crlboneee wr te etka o; vp Che tebe, Be of cy jy we SF / c| B Adu whine te Cl tebe | Ctivaks, 10-20% witacle be hecoie ey eg ce a See ) : d Acuth, F + Rete, ji : / igoy) JID 94 5/3. Pricee Whe , p. Lf o7) 2 bate’ Mave AOE Mbrvac m ol? the aflrces oe on ", gyn ay Mel he whee Zz . WSS 424 ND G- Phage LL. f aebts weelely a9 tclan, vharws Abba IGF Vi (% - Ake |: 5 Jantar e _ bry” oi ant Viel Qed ty plas (beca.) LL- ated ots Ie lang LE, A, below, Cee LTE diag LEA ut HH, Ff, art hy cakes at for forte 4 tn tA At crt Shais Phen L2g ard Lael. sar big rare ge he | adhe Aye al cate Lh (or are MA, te edmiiewe Ee ee vt. ZZ! rr On ad? fa “ye, Mo. “pe (ALD tka 64 eA ‘tf 9 Keb ne A - ! (sf- a , , ; the hy pep a ipahed plead Artal fe can reQe “yucgtitee . Me teadle Meee 7 fm, * en Dene f\ Pepher yt A (1445) A bichisadhage for Pisedmeenns fig ory men JO: D0/- 36%, . Cran, A. C. (/aye) (he Ab sla, eae tet. Indassaioog p. seen 597" Deoy phase ar rehash fin, Lyrrs tkins ere a. Tg baste ? (7942) 1 il ANirnenudear 0 14 Shakira Jad es iad Dg ao wey 5 CRSB. b , @ K-17 See Ree frag maaan | (I :389Y6 pet 1272 962 185374 IV91T1, UY (b0:602, 144 [oF: 97 J P > SHUT ) bf des 59:3 /2 Frere See ¥6:939 Cerna ¥) Mawel ©. (1947) 3 Mbebt I) W7NT- Ketek A Helly 4 Kebewtin TL. (1474) JD. 54373 cp oo a = Es Ocal obec tions Uith, Aercecfiie YER. tr wet Vere hearmesesaf to Meng obeys 4 Codioted) te Ceuticg PS burst, 8, 4 Mbp, 1 (en) Bolu gam Bakken phar, 3) (ht. CY Or», 17: 417-437, Meat litical) erbeTs Cone, hoger (79% m day. To on pein: Som Stealer.) The LHX ae meres of ie freed Sabny. ret Siac taal tel 38 91:12. Cin2.3) " hoon in dere bgaor aealicTg Lubbecrren momar £ trey pened ft kK tap aU” LB pe ad, iting. aad |: eet’ “Ace ae ay. Keb & peed PAagin- we . CL 2 Voachlay, Bop Preeen te ad, fur des Ss a cate on. Abbe 4, hiaher 2h a af aed ethas- Ma, hey ny F eaoer-# te 7 A wath 88 pd oop’ carrey Me ott, thon b hailiay oy ‘coteucknn : este catid Wy te. hte peccesns safe by*/ 2 \ Gaile Fratmonth iam feslesl yrs At, teased beet jor hornet) lato Li [i taper, Pan. - dvitekdes ) PO t y 7 ee aL. ae L fe ~ } BO. Bye) of Aha gr ey’, ated i tr i te ry jean , bP AN eee, me “ 1 bare ode a ee Tie & /16 tAihtram y, ~ j TT jr phd . Gty ). cal actu mM @ fey , jue “vy tdealion H bt rp- vithecr thee, open é Egle lnae N - Tipe yenucd Hirer, fh Cram? teeth Cay 2 few pes wad A-. a’ Herckl, Flot Mabrobe.. Tt. Caoq) Jt. SY: 313 - 344, Mate loes we ggrernrny Aakiiic) Aorabis ard aveetoner rca. twire . aKa bende | a hedesced) fe seytaise ty | LD See Melee MOH, ae Leleti , 4, Stadice hecakc bald MH edccaf Reseed, Nerrnerio 14 Cake He 11 d0: jf hactect > pave f Se Ach Bes, ATEC Danryng 407.00 6 be» ~. Fe sey sclh po Webied be Addon | ple €. Ark A> Acca a ath. $Y hy chaneky, brane fe EME L diate anerths, See ce ka beac. oe jeorteall, cet at. fle or teccsfrr. Cat. bite f gha ty Lxpeeabllga fla joo he f Lk wt, et etal LL a a ee ee ee ne of Hla sy, hob ‘a but, “ sl wf. * A U Ni cto P., eabar \ + Artest P.( 14 ¥6) AIP 72: 8lg—-89. in poke Met SL tt en o~m Behidecnarelmetcetepeelt tales awd 18 >. 3! coo 4 flan 12 nik 1 +4 44 Let » + { /f “/o) wi mre Ay cqthon ) » + are arg lank to Mr » tHe pecactoy’ : Tile LN tap Fi Ath ov thie covgte tee ble . Reventions d from i (aw, | eral there ot her og 1 fag hffo4, aeeelowall $otr heat. Aas h ~ Berle ) + Bet PUI) Be Liscezoagtc eb veruibvicle G Incecartbtercore. AIP 721: /6bI- 13° 521-334. -|}-9> +) : AV Ga. $(\-) —> RCA peat a aa See lle . bcismry (oyehHe 2odcans 25% /S uk), oer psmacts He ching Teas tr he \ ecrtoe (coat Meeting cox Cleaas May base bere raerbctof'{ bee Mealy oy J.12. Pyoeenua | Lisbeune's sack. at 37° hora prettc then, " "af /0-18. dais ois pay Des. 71. en neg Tore 4 Y ren, , eae aa Xbten. Wek rd in both Ae , wrbe th. Ahh ci L Lf 5h. af 37° Han Aon pe Fi (2 ree = (138, ore ta vuble + OCn Scat ard aft ss With 45” tnnbructons, 43 A bos es hf oe oben tinea were for ade be, elles le Cae mol Yat goalteed MIts - 17° pod ie acige VIO hn | Les culbiuure ME jouer. AM plaice Le toma 4 hasticngdage le/- /6Y oo yy! O And ah bh fromm aut lel deuce jee sence tl eee Cr CT ad f A ewe fy’ f Me bere.) Tay. HO, 732-238 U8) iow See Toyobo t Wil soy 1936p. 239 lhanen, &-C. (1948 Ohw \ S 48(3):/0 - 106. Aiailh undue: , fare it) the nr fcc ater Mu telliianp q f. fink fw L Our Ader Sta - Wyyrke ). 7 pone of bec ell at mee hus need fom vatereo foeeta cotaree > al rm og amef “ens. Paw ece & (2) Aa kg wg tts 2/g of NB ay Hd. Rete Ih. Prnekpletir urd fil colour, Deweeck BX: 36 S] (19592). 7 veces rec cab “eres 17 uaty Ag tels x Ao he at Ot -e Yo Coin fat eu len. pont IaKacphegt laf ly byt, en pI lage ) ide - jet J Plage Sear» ei ‘4 ie ae ce ‘ ah, vr lias | nh chee, te (934) The Mypogenccerly f erliforn. faccll ASEBM.S. 12: 16%~7785. SA ertiformr avd 1 peceta tated fr Yaegrncerky by Lag flair. >2/ fo Jeep ogee ain te punning pbake, av av} aretul care Kore. Lutag tar ermine phages, (52 foam 37 e+), Pocus Fkyner VR dy ses wae mevtiauscep tle ( 38% 6 tice) . 23 weegaetinrg mn eg _ 398R gellinarcan. ihr ue tad ard) Ayah on parorn2 28 om Flier VR rT San otk KR, aah on Fey, UR 3 m 378K —~ mVR 3 Aprecfee Se a1 3788) Phan S ak YS. a Croto-reeretarrce Debanr’ Januer 4. C1498, Pakiaphaye Gy lage i ope Salrunclly eg aid. 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A eed b oe ae gelr Shes —» {10 “ | je Y3 4 su apes | and sir 4 Lk - Sapte polis —-+-——e t “0 be as re ao a jrarp ene ie ith pd ng (Sepa ) ele Lp tant 42 reat alums qrational. Mb faite thr tegnepiln An +186 flan 0 fee - re] BAS Deteimmall X- ocd, opt byron] > bTy abd byrne | Meth af on fundlessum XX by cater . aera tet ee da nfl aroma H Notes pn genetics of epilepsy 3/3/55 Secondary Sources: ay Sorsby "Clinical Gens tics"; pp/ 337-40; 313-15 . Kallmann and Sander 1947. in Hoch & Knight, "Epilepsy". Chap. 3 (3 Neel 1947 Medicine 26:115, at 123-125 ee ne cares aos \ Ace q By 25-30% of propositi have family history (5~6x as frequent in parents sibs and ch en of propositi). monozygotic twin correlation 70%. Quotes Lennox extensively on cerebral dysrhythmia. In 24% of families both parents showed dysr. Obvious complexity. a A, PRE | (2y Fxamples in animals; also au@iogenic seizures. From Conrad: (incidence figures) % gen. pop. childr. sibs nephénieces dizyg. gotwins monozyg cotwins 03 663 4 1.2 361 66.6 concordance in twins: dig monoz Thus even sympt. epilepsy has a genetic com idipath. 423 86.3 ponent. Index twins were restricted to severe sympboma. 0 12.5 hospital cases. also found consanguinity correlationa with mental deficiency, but not with schizo~ phrenia,. From Lenmox: dysrhythmala general pop 10 eplleptics 09 par and sibs 06 in twins, 85% whow concordance of encephalo. &f monozyg; 5% if dizyg. (1,)smirex to 2, but emphasizes consanguinity correl. with psychopathy. a a a Re team eG —epsnetntS Conclusionsk inheritance not simple (probably several different mechanisms). Certainly a very large geneti¢ component in severe cases, from Condrad's twin studies. Most frequent suggestion is dominant with low penetrance, byt high incidence of dysrhythmia in both patents of propositi (Lenox) suggests recessive factors also. (Lennox '47 is Res Pub Ass Res nerv ment dis 26:11) CC: Dr. Javid Masnoda 4. 7th. alot I 118. got-16( 0138) Spach © Gt sob bet 2 Cpeabrantignice msainn by Cokin § 9 nti: heerlen. SOB GS: 8S | ¢ Ij Rm 14 >> Pele, 69 Sbatay8 [ Ardunnn 4 Pa. oT Had S> Dee 395] € 13 ol | fee 4. 7) Dehetre SGP 23:43 Jt re ou f aoe “ee BZ ws call lereans Prxplar: 63- Jeerrie ¢FecBel, JEN S273 a See Poe 4. AJERAY J5:227 J Rien 46: WPI. Teepe 2°fo fe I% Vale 1% “p oe f J Freudze! J. + 4: S2ymanowskt, CASB 117:543 ~946(1954) Thay bed shows tat P cad o Life sudayae ap ele, fom the ag Stale comme Ay sittye” Bub Me R eau by emacs enrcligine cated ete purrcomy «Pom Wet poaapbintiod te Misra act bargiriren t re ectfcaln in citable. Mackey sens Ecclen eo eypablee/ pacoag Tue ? i hagde 4 es fame typhe De Tharesgroal A ved 1 ny Thnk dor nf ude -H wer thet - a Pfau 2, Bebt (T, priya — 181 (1931) Pasaing lustirakirn ahi eee. 2 [Nene ° otf. 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Sot phewdao henge of carlo Farr flee (sf Peg he Le serllis, GREG cn preinif Helic : (kaos slg ld Coteipags toby” 4 Ae ea tt fromer tre sical ablicics wn Ph ven i -gee Aowed Fal patel ouch > B62:19F wey. (8-3) Ns | “o > 7 Weg: reife ll ili ofc sci cahtcn)?) re PIN Bretagne dod, I. flew 4 uh: ¢ Haurce % “t eee ap tee acon | 2) Yoote 4 yo Moe gages codon Liss = AT J} at eg ‘ell 4 5 Canadas” ere re } ky J Bah Yirst. (/t72) A tebtere Te 2 (+72) te f oe DALE | [lhe bao: tal vd ex fy (3. hie Pare cnr be. hie, eee af ae weet cts cmd, Sth. ap ot. y Fe abananpl op pall Yoh Gp 2, MecorbnniTiny gf Aaadicr (Single) 501 = lage, ret mend, cy 460 scr ee Lhe. ve Vale bos daw tut ) peated ph optus god mq £2 wp asey ceckbing . d, “TF oe OK, vee it I oi L +00, teawllrarle |Back V9: 233- -/77T. Senco totes Tn it, 2 wh 3° YI See ttt aoe Laue tq 370° 25? n0y ee den stg fea bof 2 Jfeks aL + delve Th Vreiieraded A JS Bad spe -[- sCcreyy) Le, ther Caacline Faametn- fre | Lo “ berks fadtetinels . * 465-608 (1934) Cul 6 Chale J Bek se UW/- 458. tlebece of Her peerger aes fed, (ee othe y, ip) Yolo 7 ue fe ~ tal aa uel, be, «) cp Ly * olbMeex: Aap hiplle an oS pen le My, ie IE LG. Ivo GA, PA. Y Back $1(6): 699 -Pou (1846) ) Gectacony' v2, cto Y MPatt Parercharidares J.C, hen. Pot. 44: 975-787 (1930) SpMalinn any Getting 2 fh. ike co See. Yo: 2 43: 579. ates (PRS OF 9.468 (191). Varela Sf. wy the Ly Heston Aarolhins > [Cnctene ey ) Seual FH J iy 22.379-95 (l9e) Fue Mf gtd babi Monde ercprk med sebegaarnen places - Porta eas 20: 151-25 (198) Vasil a. (Pssrsey: Leben 3 "The Haneef bai" My. 0B ieee 2 ell pakten Ahh pot lag lle wn eects pot Precbe JM, J Rak YL. 195-223 (/Fy/ the : ed! : : Kathir. 5. weep ‘ / / i) fi" [ Secucoey) Peel sapetbting | a if y Melon, LC. Aloe Hud Fircacte: I-18 (e750) Let (Lidog ie Les Pract tad ye PRD . J Beseddesi /). 4 ). @ Siet 27 48 (193 4) 3A i wf Ll Cg td ty peck fecal + Mensatewen 1730 t Yerarn / 18508 ; “ : matation. b Grito Ot yin. ; indected t ‘action a of bioclemerced un ea eo“4 4 ada ghiae Coegyuser. JPA Lergedlonsa ) p ; trance JLOM JEM J Cok Re» aegk Rew J.0.C4. pact Rev. J.th ch. BR But fagdagect Li ; on es Tf, So ete penser??? os slat a 7 Beth 3 39¢¢):) (29s B— “> B/r ro > ric B, Bir By > Broa. o Zé Bro , roe Aya. Ba, -"> Rar’. ror ol bay —s q, & Bay’ I / iy Ber! > Bar’ stint Garr’. The wither veces aoe ati; mregenad hpat | GB "> Bas. Tired TLt+yr Bacteriology 231 April 17, 1952 M. R. De Carlo Some Aspects of the Nitrogen Metabolism of a Lysogenic Strain of Bacillus megaterium The total nitrogen of the infected and uninfected cells was determined by the semi-micro Kjeldahl technique. The uninfected cells were fourd to contain a larger amount of total nitrogen than the infected cells. It was found that the desoxyribonucleic acid (DNA) content of the infected cells was slightly higher than that of uninfected cells. The presence of the virus in lysogenic cells in the immature form is believed to be the explana- tion for the slightly larger amount of DNA in the infected cells. The teconique of Feldman and Gunsalus was used to study the activity of the transaminases of B. megatsviun. Pyridoxal-P04 was required as a coenzyme and a number of amino acids could serve as amino donors, The effect of sodium azide, sodium fluoride and iodoacetate on growth and virus production was studied. Na® had little or no effect in the con- centrations used, Sodium azide and iodoacetate depressed growth and virus formation, The inclusion of ATP in the medium, along with the inhibitor, produced inconclusive results, studies with W1>_anmonium carbonate showed that after a 30 min. ex- posure the amount of wis taken up by both strains was the same, A study of wl distribution in amino acids, purines and pyrimidines was done also, A complex amino acid medium was developed; it suvported better growth of the lysogenic strain than nutrient agar, the amount of virus pro- duced was significantly less, The addition of asparagine or adenine to the amino acid medium increased virus formation, The two strains of B., megaterium were grown on synthetic media contain- ing purines, pyrimidines and nucleotides as the sole sources of nitrogen. The uninfected cells showed good growth on these media, but the growth of the lysogenic strain was only fair, The lag phase could be shortened appreciably with larger inocula, i. ¢., direct transfer, Little or no ammonia was liberated, and there was little change in pH over a 48 hour growth period. Attempts to isolate and identify intermediate products of metabolism by chemical methods, paper chromatography and UV irradiation were unsuccessful, References Feldman, L. I,, and Gunsalus, I. C. 1950 The occurrence of a wide variety of transaminases in bacteria, J, Biol, Chem., 187, 821,830. Lwoff, A., and Gutman, A, 1950 Recherches sur un Bacillus megaterium lysogene, Ann, inst, Pasteur, 78, 711-739. / ° 1" ben. _ : pout ih Yinr02 | ptellinty ) utike -¥ uo Ry! lal er fo age on Other 4 OALLD As as trae Any 7) te Lanne . | ( we) dajag jh oe alegpel no vt Movin F g 2% Tj hl wudlapd / ; Fp £4 cll 2 Fens Fy. febhe sss gables rrswell ys Abel "adh i “i? Bf Ls erat fool a eoleen prev ceil. pd yg «HO oe tts po Bette Oecernubly eer) A bakewrs war (wlitisuter ) ire: haeidling Mads vowe FF, Ceti, Unt muted pets uli thai, di dually | (Patius (Hepes m Tidy steph pots ?) dat. weaned, ad Ty Te pune han cond bony tender tle te UrHk paker v7 ee “gata ii Lag peapotion | f urbe firs oe “hen ayn’ fom Por les J eh ret ol i pe J Nettie id 9 —_ a7 TIT eb py Ir ypnor ascnner, i, 1946 tne symbiosis of sucamosipoaa aegyobia seq, Sull, Soc, Youed sntom., 30, 1-6, corghese, &, 19)7 Il ciclo ael batterin simbionte di #lattella germanica (LL). wycopatnolosia 4h. (18 px) sorghese, 4, 1948 Osservazioni sul batterio simbionte della ~lattella co , ‘ 4 ? T 2 rye germanica L, sonitore Zool, Italiano 56 (Snool,), 252-253, bramstedt, *, 1918 ber die verdauungsnhysiolocie der aphiden, Zeit, f, 7 ; . Sian J mB Naturforschung, 3b, 1-2), ; Malndee svenner, 2’, 197 Symbiosis in Oliarius, Nature, 160, 26h, nn puchner, P, 1949 Symbiese cer Tiere mi oflanzlicnen ikroorganismen, Sammlung coschen, 1128, 128 on, 916 pnezymatic breakdown of nitrogen compounds ecteria of insects, sxoerientia, |: !) on, + — 1 by the nitroven fixing b ers H. T. 197 Intracellular vacteroids in che cockroach (rerivlaneta “ . . : : errr etme ernnenaeinatncsee auericana Linn,), J, sact,, 53, 173-169, wbaser, n. w, 19465 the intracellular bacteria of the cockroach in rela+ tion wo symbiosis, J, varasitol,, 32, 483-89, uoetscen, w, 1946 Larm-Symbionten als uiweibquelle und Vitamin-spender, Usterreichische “ool, Zeit., 1, 55-86, Goetsch, W. 1946 Vitamin "2" ein neuvartiger wirkstoff, “Osterreichische 4Hoologische Zeitsenrift, 1, 49-57, Cubler, h. U, 1947 Versuche zur Zuchtung intracellulaerer Insekten- symbionten, Inaugural-lissertation, Univ. Zurich, 3) DD, Feller, 4, 1950 ine Kulture cer intrazellularen § mbionten von reriplaneta orientalis, 4, f, Haturforsenim 5b, 269-272, Koch, A. 198 seeriff uno sedeutung acer symbiose, iikrokosmos, 28, b po, Koch, 4. 1948 Weze und Zicle der experimentellen syibbioseforschung, Naturwiss, Hundschau, No. h, October, 1918, pp 166-171, Koch, 4. 1919 Tie Bakteriensymoiose der Kuchenschaben, Mikrokosmos, 38, 6 pp. -_ Koch, A. 1950 Punfzic Jahre erforschung der Insektensymbiosen, jie Naturwissenschaften, 37, 313-317. mahdihassan, 5S. 1946 Tne micro-or:. Janisms in Melophagus ovinus, ‘Surrent an —eemanmemelicueatatemiet — eeahennnenteeme Sei., 15, 166-167, % e 7 aX >” vahdihassan, S. 197 san, S, 1916 ame pacterial orisin of some insect nis Mandihassan, 5, 1947 Cicadella viridis, Its symbiotes and their function, Curr, Sci., Lo, 58- wpecificity of bacterial symbiosis in spnrophorinae, Proc, Ind, Acad, sci, 25, 155~162, mandinassan, o, 1947 sSacterial symbiosis in a Margarodes sp, current Selence, 16, 379~380, 1917 Bacterial symbiosis ic Aphis rumicis., sandihassan, 5, aut & rial susei Nationalis Prague, 25, 123-126, &cta snto- nologica liahdihassen, 5. 1948 Hacterial origin of miscle pigment in a Cicada, Rev, de antomologia, 19, 585-586, veklo, d. 1946 Symbiosis of azotobacter witn insects, Nature, 158, 795-796, . Mau, A, 1943 Symbiose unc Symbiontenerwerd bei cen mexbraciden fsomontera= Cicadina) Zeit, orpnol, Okol, Mere, 39, 369-529, penanderl, H, 199 insere cerzeitigen Lenntnisse Uber cie Yefen, siclogia Generalis, 19, 130-162, Senanderl, H., Lauf, G, Becker, 4, 19h9 Larinysmoionten der Aphiuen, ‘Zeit, f. Studien Uber aie uyce vaturforsening, lb, 5 ‘ "ne dlological .ixation of atmesaneric sitrorsen, Ono= graphs in fav, Scl., No, VY, Sunsarian vusewn of Nat. sei, 116 po, Wf %. > > : ce > rv roth, L, 1950 vrotein metabolism anc nitrogen fixation by ingans of «icroe organisms living in symbiosis wita insects, sivsntn Tnberneticnal Sonse ress Of entowolory . 302-306, Jek -. Hua fee potest epee be beige OV a ots , & Lac. Corre , D.B.; Roberts R.B; Roberts J.2. Tai CCP 34: pd p Arrives putibole isn gr Eocberichen cot. x. Peale bo soa, nw and toned ee Yat raher epeatbboven pl binges pee jul dard brine t. K emeavrtald : Ws eg ind K bovard vente ant ; akeo ° fed K as epiallin <"A acl obs Hay 204 sleepin fh a we sti cethe uct “bce sede ty thie er, pli ce. filiee d pr x7 ep pean he de ete rac eV es beter of « eallig ” W her, AA anhed K 22 fabacn up ¥ 4 unm ef bag k]m a [ot Prevs raf |< (be Kain treme th) we at at Fuge K >) Te fn cashing Ai ntbhdlerinr, ) whl > oy tage IK caput, VSI 193 VA vncgrdvta te viard be fajtdy pesrn! wh. 2.34 0.3 afrno Chin ape mee lk, tehreetTE saablif K -agrhamnge lebih P~ leas. DWP purnintiof K former Arche whl Fraghles ete an po, vt Mhiugh Ade K raeprds fru Kevmrulacel by ratpecel ng rolls w)n Wal pH4I YL) Fh, 0; uate >| cea + Heres y 4) arti 32% ern, bm plud thal K - whe te eigen LOS tertora - ta. of Takes. 2 with 1-1-P acelicetd See Tarbert Y epee PAerounn pdibolorr, m Fashee, olug eot. DE pttleln., An The pring | tort duiduli « thu, velit ducks ] CCP By. 259 ~ 2). ee fh bee. el beg Ke ak seth ae td a3 a te Ltr. Je op thse rrviaffectad a4 UV ox Beypint elle, . BIBLIOGRAPHY: JM. NAYLOR MATSUURA'S SPIRAL THMORY OF CROSSING OVER Beadle, G.W. 1938. Further studies of asynaptic maize. Cytologia ):269-287. Belling, John 1933. Crossing over and gene rearrangement in flowering plants. Genetics 18:388- 413. Huskins, C. Leonard anj Stanley Smith 1934. Chromosome division end pairing in Fritillaria meleagris: The mechanism of meiosis. J. Genet. 28(2): 397-06. — ee -- and cane D. Spier 19%. Tae segvegction of hetercnorpuic bonclogous chromoscmes in pollen mother cells of Tritteun vulgare. Cytologia ©s269-277. ~“--- --- -- and G.B. Wilson 1938. Probable causes of the changes in direction of the major spirai in Trillium erectum L. Ann, Bot. N.S. 2:281~291., meee eee ee and E.B, Mewcombe 19);2 An analysis of chiasma pairs showing chromatid interference in Tiilium erectum L. Genetics 26:101~127. Morgan, L.V, 1933. A closed X chromosome in Drosophila melanogas*er. Genetics 18 2250-283. Matsuura, He 1937. Chromosome studies on Trillium Kamtschaticum. TIT. The mode of chromo~ some disjunction at the first meiotic metacrase of the F-MC. Cytologia 8:142-177. ~ sew eee 190. mm ee eee ee RH eH HH XII. The mechanism of crossing over. Cytologia 10:390-L05. -—— ww re 1938 ° weer ree HR Re HH VII. Additional evidence for the Neo-two-plane theory of univalent constitution. Cytologia 9:78=87. — rr ore 191 * ee XIV. Primary and secondary chiasmata. Cytologia 11:380-387. -—— wee 19h ° wee ee eR Er eR Hee and its allies. XVII. A study of chromosome interlocking in T. Tschonoskii Maxin, Cytologia 13:369-379. Be ee ee ee ee eee XXII. Critical evidence of the spiral theory of crossing over. Chromosoma . 3:32-1:39. CHROMOSCHE STRUCTURE (GENeRAL} Belling, d. 1928. The ultimate chromomeres of Lilium and Aloe with regard to the number of genes. Univ. Cal, Pub. Bot. 14:307-318. Casperseon, T, and J. Sehultz. 1940. Ribonucleic acids in both nucleus and cyto- plasm, and the function of the nucleolus, Froc. Neb. Acud. Sel. 26: 507-515. Darlington, U. be 1939. ‘Hadivision and the geneatica of the centromere. J. Canet.s 37:341-364. Tarlington, C, J. and L. Lacour. 1941. The detection of inert genes, Jour, Hered. 32:135~121,. Gates, %, Ruggles. 1942. Nueleoli and related nuclear structures, Sot, ‘wv. B33 7-WI. Heitz, =. 1931. De Ureache der gesstzmissigen “ahi, Lage, Porm und Crosse pfleanzlicher fukleolen, Flanta 12:775-&4i,. Heitz, ©. 1935. Chromosonensturktur wad Gene. Zeit. ind. Abstam. Vereb. 7C: i em hdeT « Husking, ©. 1. IAL. Structural differentiation of the nugleus. din: The Structure of Frotoplasm. (ed. i, Sedfrig) 109-126, lewis, I. . 1941, The cytology of bacteria. Bact. Rev. §:161-230, MeCilntoek, 0. 1934. The relation of a -artiqlar chromosomal élemrt to the ‘developeent of the nucleoli in %ea «mys, Zeit. Selif. und “fkr, anat. 211 Zl 328 6 organ, De Te Je L943. The formation ef chremosenters in the interkinetile nuclei of mise. J. Hered. 34:194-198, Nebel, 36 %. 1.939. Chromosome structure. Bot. Reve 51563-6026. Rhoades, ie ie lO, Studies of a telocentri¢ ehromosore in maize with reference te the stability of ite centrosere. Genetics 25:483-520,. Roblnow, C, 9. Lyk. Nuclear apparatus and cell structure of rovueshaped bactorla. dm: The Bacterial Cell (Re Js Dubos ;, 355—377 6 Schultz, J, and T, Caspersgon. 1940, The genetic control of nucleolur conposition. Proc, Hut, Aead. Sed. 26:515=§23. Straub, J. 19r3. Chromosonmenstruktur, Naturwies. 31:97-108. Shite, M. J. 0. Nucleus, chromosomes and genes, 1942. in: Cytology and Vell Physiology (ed. Ge. Sourne; 139-159. alo Yu relie : du nn Junith (2) » 263- 367 1? 32S Stef L. andl F. Sauncleeco, J. Get. 36:53-36 (1938) + 2 tttobedn oh’, pus P, ty min , exrvbiratickes -: Eola, precelipte erleia ee, Hype hesag . Se ane erent aren A I EE CSS Kreg drnactec Hf. + A.d. SeLQ, J, Gen A lagacah 22 377-397 ftyi) Fe Bafa Wp lily oi ecbdegralO> Dew eteL 1996. — sie tenenGl ht be tinns o~ thupmet- prot) calle, Tieapneek sical | harer. . To feTeee 1% acacen + IM Phonplate MeL AAR Su+ H\~ H,- C te —He+ 1, ery Ree phe 7 4 ue hash / ay s - f. “al a > Sy t M+ HM, . felon M, + pape Beigh FC beda® OC ori utea “4 ee ar \ € if f c b. yf Cerra WOR Hele - Yl 2 at alse Mee ye ha IL let, - BIBLIOGRAPHY ON THE GENETICS OF GOSSYPIUM, From "The Evolution of Gossypium", Hutchinson, J.B., Silow, R. A. , and Stephens, 3. G., Oxford: 1947 ppl60o. Beasley, J. 0,, 1940, The Origin of the American Tetravloid Gossypium Species, Am, Nat. 74, 285, 1942, Meiotic Chromosome Behaviour in Snecies Hybrids, Haploids, and Induced Polyploids of Gossypium, Genetics, 27, 25, Harland, S, C., 1932a, The Genetics of Gossypium, Bib, Genet. 9, 107. 1°032b, The Genetics of Cotton, VI The Inheritance of Chlorophyll Deficiency in New World Cottons, J. Genet, 25, 271 1936a, The Genetical Conception of the Species. Biol, Rev, 11, &2, 1936b, Some Notes on Cotton in Colombia. Trop. Agr. T'dad, 13, 32, 1939, The Genetics of Cotton, Jonathan Cape. 1940a, Taxonomic Relationships in the Genus Gossypium, J, Wash, Acad, Sci, 30, 426, 1940b, New Polyploids in Cotton by the Use of Colchicine, Trop. Aer. Tldad, 17. 53. Hutchinson, J, B,, 1932, The Genetice of Cotton, VII 'Srumpled!: A New Dom, in Asiatic Cottons, Produced by Complementary Factors, J, Gent, 25, eal, 1938, The Distribution of Gossypium and the Evolution of the Commercial Cottons, ist Cotton Conf, Ind. Cent, Cotton Cttee,, Bombay 1939a, The Classification and Evolution of Cotton, Trop, Agr, T'dad.16 ,82, 19396, The Relationships of Gossypium raimondii Ulb, Ibid, 16, 271. 1943a, A Note on Gossypium brevilanatum Hoch, Ibid, 20, 4, 1943p, The Cottons of Jamaica. Ibid, 20, 50, 1943c, Notes on the Native Cottons of Trinidad, Ibid, 20, 235, 19434, The Effect of Environment on Hair Characters and Spinning Value in Sea Island Cotton, J. Text, Inst, 34, T61, 1940, “The Cottons of Puerto Rico, Puerto Rico Agricultural Journal, 28,35, 1946, On the Occurrence and Significance of Deleterious Genes in Cotton, J. Genet, 47, 279. (In press), The Genus Gossypioides Skovsted, Hutchinson, J, B, and Panse, V, G., 1936, The Introduction of Improved Strains of Crop Plants in Central India and Rajputana, Ind, J, Agric, Sei. 6, 397. Hutchinson, J, B, and Ghose, R. 1. M., 1937a Studies in Crop Ecology I, The Composition of the Cotton Crops of Central India and Rajputana,Ibid.7,1 19370, The Classification of the Cottons of Asia and Africa, Ibid. 7, 233, Hutchinson, J, B, and Govande, G, K,, 1938, Cotton Botany and the Spinning Value and Hair Properties of Cotton Tint, Ibid, 8, 21, Hutchinson, Jd, B, and Bhola Nath, 1938, A Note on the Occurrence of Chlorophyll Deficiency in Gosspium arboreum, Ibid. 8, 425 Hutchinson, J, B,, Panse, V. G., Apte, N.S. and Pugh, B.M,, 1938, Studies in Plant Breeding Technioue, III, Crop Analysis and Varietal Improve- ment in Malvi Fower (Andropogon sorghum), Ibid, 8, 131, Hutchinson, J, B, and Silow, RR, A. 1939, Gene Symbols for Use in Cotton Genetics, J, Hered, 30, 461, Silow, R. A., 1941, The Comparative Genetics of Gossypium anomalum and the Cultivated Asiatic Cottons, J, Genet, 42, 259, 1c44a, The Inheritance of lint Colour in the Asiatic Cottons, Ibid, 46,78 19hkuy, The Genetice of Species Development in the O14 World Cottons, Ibid, 46,62, 1946, Evidence of Chromosome Homology and Gene Homology in the Amphidiploid New World Cottons, Ibid, 47, 213, Silow, R, A. and Yu, C, P,, 1941, Anthocvanin Pattern in Asiatic Cottons, J, Genet, 43, 250, Skovsted, A, 1933. Cytological Studies in Cotton, I, The Mitosis and the Meiosis in Dinloid and Triploid Asiatic Cotton, Ann, Bot, 47,227, 1934, Cytological Studies in Cotton, II, Two Interspecific Hybrics between Asiatic and New World Cottons, J, Genet, 28, 407, 1935a, Cytological Studies in Cotton, III, A Hybrid between Gossypium davidsonii Kell, and G, Sturtii F, Muell, Ibid, 30, 397, 1925b, poe New Interspecific Hybrids in the Genus Gossypium L, Ibid, 30, 447, 1935c. Chromosome Numbers in the Malvaceae I, Ibid, 31, 263, 1937. Cytological Studies in Cotton, IV, Chromosome Conjugetion in Interspecific Hybrids, Ibid, 34, 97, Stephens, S, G,, 1942, Colchicine-Produced Polyploids in Gossypium, I. An Autotetraploid Asiatic Cotton and Certain of its Hybrids with Wild Diploid Species, J, Genet, 4E, 272, 194, Phe Genetic Organization of Leaf Shape Development in Gossypium, Ibid, 46,28, 1944p, Cotton Growing in the West Indies during the Eighteenth and Nineteenth Centuries, Trop, Agr. Tldad, 1, 2%, 194s Phenogenetic Evidence for the Amphidiploid Origin of New World Cottons, Nature 153, 53, ighla, Note on the Meiosia of a Triple Species Hybrid in Gossyvium, Thid, 1535, 82, 1alhe, Colchicine-Produced Polyploids in Gossypium, II, 014 World Triploid Hybrids, J. Genet, 40, 703, clr, The Modifier Concept, A Developmental Analysis of Leaf Shape 'Modification' in New World Cottons, Ibid. 46, 331, 1ailie, Canalization of Gene Action in the Gossyvium Leaf Shane System ané its Bearing on Certain Evolutionary Systems, Ibid, 46, 345, 1946. ‘The Genetics of 'Gorky'. 1, The New Worle Alleles and their Possible Role as an Interspecific Isolating Mechanism, Ibid, 47, 150, fr ’ Pubblicazioni della Stazicne 22 supple 1950 , June Relaziont tenute al convegno 27-31 margio 1949 we Auerbach, Cle (=22in} Possible differences between the e®Pacte oe” chemical 1-21 and physical mut sense C.D.Darlington (1ondon): Physica? and cuericel breakare of chr mosones 220m 3] i a E. “storn (Zurich): Erfehrunsen mit Phe .o ol-Behand? ung vou 2r oni la-Gonaden 52-49 in vitro +k ov H.fe-Taylor (Paris ): Biological’ bignifieante of thé transforming principles of - eS EPROM _Pneumococcus es © G Re Latarjet (Paris): Inivetion d'une mutatica svecifisve ene” vac beeterie var Jes 4, my / j: oO ff, 65-78-93 cancérigenes hydrosolubles. ¥.? Bux Hol ¥CA Flas ¥*B, Eohrussi (Peris): Inducticn var Blacriflavine d'une mutati n svecificue ches /a 50-64 levure N. Visconti fwdieanis: Le mec anise Maction letuale de ta moutarie azgotee sur ; \ : ae tei hd Bacterium co ‘i Vert( Teustadt im Seow rewalé): Uretrane-i duced mutate 1184-124 Be Battes'ia (Pisej: Muove coctanze int lucenti franentazione cromcsomica 125-157 @.D! Amato (Piea): The c remosoue breakics activity of chemicals a. studied by 158-170 the Allium Gena test Ae cuzzati-Traverso (Pavia): Perspectives of resea erch on wtutasens (A lisevssin with the varticinants in the Symposium) 171-186 Bibliografia generale 187 Parkig aud | “yo J, Mere egs & Vays) Mary we. taal, fast | pny fe ip mini nels, Reagents vicetcastd Vo LE? Dore Lh 9 dorc.. floc ble U Weinstem, EA +/7 7/3 Séu der, A, . Why Pq al, 5D: 34/- yr (1143) Qenrdke, MB+t EA Oeecolin. | y ) E, ‘ ation, 4 otilkprictor ane tits Le ae Pace lel poe har er Hc Yd f / eC Mherte Ther. ogy SG: 96 -106 (09 /3) Br athe Jenmofet- Reatoyhy, ed bo, WA 6%: NP -29 (1924) Then Nght (ee pola an, tet a vey A ak. PRS. BID351 nag, >. CRAS 205:604 (0934) Demerre , ken. 22: 465 - beter f haditins lar /9 VG. po ct bth i th 2.227 -£3 (1538). Aes / > Ke GA, KH. [neeor, folie x pants Yeats Trypanosome Refs. PSEBM 67: 77, ‘48 J. Pharm 82: 137-151 '44 Arch. Protist. 68: 187, 1929 JeI.D. 81: 139, '47 Z. Bakt. I, 53: 303, '10 Trahs. Roy, Soc. Trop Med Hyg. 22: 85, '28 CYTOLOGICAL TECHNI UE Belline, J. 1930. The use of the microscope. lecGraw-Hill Co., New York. Coleman, L. C. 1938. Preparation of leucobasic Fuchsin for use in the Feulgen reaction. Stain Tech. 13: 123-124, Conn, H. J. 1940. Biolocsical stains, 4th ed. Biotech. Pub., Geneva, New York. Darlincton, C. D. and L. F. LaCour. 1942. The handling of chromosomes. Unwin Bros., London. Hillary, B. B. 1939. Use of the Feulgen reaction in cytolory. I. Utfect of fixratives on the reaction. Bot. Gaz. 101: 276<-300. »- 1940. Use of the Feulsen reaction in cytolozy. II. New technicues and special applications. Bot. Gaz. 108: 225-235. Johansen, D. Aw 1940. Plant microtechnique. lecGraw-Hill Co., New York. LaCour, L. F. 1937. Improvements in plant cytological techniaue. Bot. Rev. 5: 251-258. Lee, Bolles. 1937. The microtomist's vade-mecum (ed.) J. 3. Catenby and '’. S. Painter 10th ed. Churchill, London. Smith, Luther. 1947. The acetocarmine smear technic. Stain Tech. 22: 17-31. CN nal, DE. (09) Cersrgtee sab fen fi ary pieltats parte she ee) 12, LCR Areth +4 hard. hbMG, ln COSOs H Aeopesers’ 3. - The ie 49 » heahes SE the howe Add 100 wll aa oH —? og eee han ke CS at 80% Cereals 178 3-4 x 14 50% Lt0# _ CN if Ch-S. 1684 (1916), ot a H Gfd ory Cete Dla nyt Tx 07> 4. from ele hacteae Dopp h Seeger, Unease. E, ; Tio vt. (®} 18 Fi dda ln at fai or Abe be fat 277: 171-180 (194%). To Caeanee ALE AL fF Oar Gee so, ee hut at l. , 42 7 ae 7 } fof cf I “ es / i i o i ee ae ro C ed . ¥v Cop ~ af med f heer fi J [7123/0 tara Se JOC INT94-108 (7473), Ut) Comal + Clues tian JMC 150: Wd-15y (7973). ers) AA pein’ 7 laches ay the nating cab. /G 63z2— {) YEW Caputto, R., Leloir, L.F., and Trucco, R.E. (1948) Lactase and lactose fermentation in Saccharomyces fragilis. Enzymologia, 12: 350-355. Extracted adapted yeast cake by adding 4 vol toluene and .2 vol M/2 NaHCO_ and mixing 20 mins. Washed with one vol. water, solid then left 2-3 days with 2 vols .6M KCl. ?Residue removed, Add .4 vols cold acetone, discard ppt, and ppt active fraction with additional «3 vols. Redissolve in 20 ce .6 MKC1. "When suspended in pure water the enzyme loses about half its activity in 2-3 hrs. AS fractionation gave high losses, but separation from invertase was achieved. Modified Steinhoff method used for estimation: I. 7% CusO, added to 50g NaAc to vol 100 ml. II AsMo Rx according to Nelson, +} wel SM Hy SOy JBC, 153,575 '4d III $ 5N Sulf ac 2 ml sample, 2 mi I and .4 ml BuOH mixed in tt grad to lOml. Cover tube with marble and heat at 80 20mins. After cooling, add 2 ml II, 1.5 ml III and water to 10 ml. Mix and read with #52 filter. Found reduction by glu, gal and lac in ratio: 1, 1.2, .016. M/25 Phosphate buffer caused ca 44% inhib., but accounted for with blank and with glucose control. Lactase: pH opt. 6.7-6.9. Deprot. usually unnecessary. Rather poor lineatity illustrated. Apparent phosphate activation notei, but explained as K, and removal of Zn, etc. K, Mn and Mg acbivated the enzyme considerably. (ca. x@x M/100) Hexokinase studied: fastest with glucose; lactose only after induction (hydrolysis?) Amount of lactase more than adequate for rate of fermentation, but faster fermentation of lactose than the, hexoses not explained. "In cell-free extracts, toluene treated, or acetone dried cells, glucose fermentation becomes the fastess’ so that either the enzymes necessary for the direct fermentation are more labile, or the different rates are due to some structural factor such as a differential permeability to lactose." £ ry - . : ~ ~e yok Jo we = : . ms ‘ ~ »~ 7 ‘ a emma a we ~ & a . ~ SS Sof a ™ 7 XA 4 : : a a > a Ms ee . i A r “ = ~ 4 => ~ af My S ~ 2 ea. i - ‘ ~ é = Ne > wo t - . c \ : ‘ ~ ~ Om ~ , See a . ‘ a Xe ~~. ” . = C : & } _ _ ~ SOS ete po ne t = o a oo , ‘ ce OR 8 Pe gs ALS BoE | \ j “Vv oy . me - os i i Ny a ~ : S - cr ~ FP as a ee | \ . \ u v CS ~ AL. \ (TON Ne L ~ : . a a3 ~< , SN SS cA nw Oy Vy od 4 . -> co MLD na \ CS S g cd = A yauddiBagay OF Neuro cc Qe. A. BloGhowie:nd wait units. 1,Bandda, GW & 30 Totus, PNAS c7pheo0G, Usnatic control of vivesssical Panctions in Neurospora (( (:abp), (pyr), (21) ica. 6. Tatus & Baadia PNAS stteodea5 104. Dost An aninobanuv@éclags guint. (4333, 6552) 3. tutus & Baadlea, orovtn Say e?esu 194s.Tha reiatvion Of gansticu to “rovwtu Factvora and ho chonas. 4, Bouuwst,D., Tatas & Bendla, Arch Uloch Sy7diewol Aveo, ¢ A wutant atfain raquiring isoleucine cond valins.1d117, & Seu An & Nii Gowrowitse, JeC dbé:levea: duae, Ths Urnitiula: yoda da Agurespora ‘via ita .snatic control G. Horowite & hasdls JSO 150;365-55 1940 A uderoviois, deol astiou dor tov u-bataiaition of choline by uss of « wufant of Neuroa or :.d4400 7. Loria, HS & JG Phares, JBC loGGol"O) Luda, Pyricddins nuclaouidssa mas Wudhoetldaa au groxth tuctors for stitent atruioa of Naurespora. we Horovuita, JHC ioa:l¢1—0 dived. Ti Geawbng oGia oxlG as of Nauroopora. U. Kyat ani a Brand, JBC 254¢icle7O5 1044,./ matnod for tia dutarodushi iu of Leusins ta protein hydrolyantay ona dn fooustuiis by tha usa Gi a Rauroupora musaat. 40. Raynary,DO JBC Lod:lblec0 duad, A Leuodinslase uutant strain of Neu. * di, Tatun Bousar & deaadisa, Arch Biooh 3:477-c luas Antiranidio acid un tus biosynthesis of Indois anu Tryptopuon oy Ne Ad. Tatwa & Bonner, ABC 161:382 1145 Syntuasis of Tryptophon ira. inmiols mad Sorina by haurodporn. 43. Gowst & R Dorlans, AB 2245le62 1943. sxpariwsnts on the «ep, diedion oi a. aitophilsa to tas asansy of Pyridosziss an tonto ciate, 14. Stoksa,JL J® Fostar & CR Woodward, jr. AB o7550"45 1°45. Ayntieslis of pyridoxin oy a pyridoxinlasa Xeruy wotant of he ai tophila 13. Stosoa, A Luragn, CH Yoodward,&Fouter, JSC doUsifecd Lush A nauzcen apors auasy Tor pyriuoxbna dae BHyasw,0, VU Lilly & LE Leonien, S$ oigdoesu lisa Pha siiact of pH on tag availability of peaadnobsnsoic acla bo dW. Grea 17. Ryan Besdls & Tatus AJB 303764022 1948, Ths taba cation of mauauring tad .,rorvth Of NYurospors. ded, Ry on, Patur & AG Giaas, JUUP sS:b5eu4 104.,. Tha foureGarcos Paapl a tery ayaten and the rvoth of tua mola Neurosporn. 19, Doaruan, Abs A dysitialass stenda of Nauropera am ite dnadodition by aor.inine, i ee OP aE wk ee Ee gy A awe Be USLabAS Cus CY SGA RAG Wwe de Sodar,eb & TO Boia, J AGP fae Sotdub eae: Lie Liga wi storladand SieePotinddlog of 6530 £90 Urw soad sum dk Of bia Gonkid.. alteap..dda _ POUp. ty Dewiyd, JAR SGgoe sib 2007 Husker pone mao@d bad 84th hatator Bioddisu ah honetlissads 26 $d BGyEO ba 12 POG, Pte be Do pd, JAN Botdedd dono. “rOduosdon of FiTbAds Bye Rh s dn bla Bs Ge mya Nawurowopna, N #@, Deyo, O Percray cPessPe%o 4940, Uavuidediviubon oy ora blow sad oFeasin, uwet du tos Pus de be Deka S foresy Gighfoed) 2:46 lataroooryoule vi Gr dn gaursppuraec Be you BO Porvay T)puwerdl 1045, Croaid Over ces Goeoina wd OR ad PA ABAGis Gi Tite ie Te Tis GyYereugin S63 G0eF Aud, Gong wa HUGsoOWw wivaudon an Gay aia Le be Ba aida, & VL Goctult, GQ ole. saegkl ddod hatucugaryQuls di beG. 234 1435 ut ey i fran ( 20) ( JyS ) C 7339) _ \ - + 74 ee \ -_ i > _ \ \ ( 745) ( 2 ) (is) ) 7 ~ — t+ _ 7 + 7 Om mL —_ CL, CL ~ \ . | / \ / g - ek ++ ~ fa | ) eL Cl. Ck te : _ + _ ew — Cr. a = CL be _ t _ + . . — . - a — 7 . - Ci en o . Tn n acc nesearch, Vol, VI : references Lrocie, ds tion of Lhaeresiol. 3 on ir 1 anc She~ coliform rs (a> 1. as ve a re: ‘Ss c tion te references cl ld, my file. c Cane Areric Follo-vin woos, entiel inhibiti weakens ! Oey me onoecdt> - co NOSE LOGY i To, 1 ceir avy lication my tons on ie @ifferential inkibi- on eoliforr 7 4 are FA. (1427) BIE. F229, be ahbinlgahy cht yp lath Pha ete tes (1) TEE Mayes Lepr ve Ath Cad sills {00 @ Pass 1s +18 agidad, Leda ole iypeccal to: qe" feo Dye na vo ta Theda be phage § otuch, his po paints (Te Brie weg Hanedle” rssh hyped! by Zp ace lp “ * Isr Use gl» gh Mn t7 Lowi / . : ‘ —__ 4 - | Crrcbicrin : S Aye re Iai iLL C2? wll 4 iA (1 pofor- = . j y 4 ¥ \ (VES “ye a CQ Te i Aik Cped<1t aporls «., p EPL 4 Ce early cad | le Werte, Ban wr4b. Fite, the. Epon ep oe. At om RAS f ple ci Ve patcrsloy oP Aff me hott, bbivenn S4S/P 2 eK1P RIS AD eA chet ef. hS peie nwel Lille cexro-nwctor feared th & , INAe Cefed la ee D 1,12, 33 &, 19 28 I,>9 37 eibnes TA — , Neston a ea yt IF, >>, N+ID aecR PY ug cdidtfud tks. ota yp te wee Hat ok thay d Brt+aF : 2 lame I Sy (OO oy gpl rae [12 ave Vteglle “|. AGL fe gti wt. t nad Ag he / tele will, att; f ri Med. i lopur banat ype Php , [ne cece wba hey. re a fran al te tl. “poy ao cpyucstin er ah wy Anas Aang T. K “os i : Mi | Wig Lie 5/3 Po pres tray! ‘yh a wt ee a a Bea, Sit Davita elle or “he. AGONY Lr iran as, fod L workul f 50)! magtcesrerst len gh 0 aay lictonagd N~>-fp->-. cov Yulee ple gi theccchiue v aiddurle andthe ix Demet 'Y 30) pa Terran hogs 1 te S.P.6. 3 2:047- boy, ferg - vt Tb, 1 > ehloreresm A ‘pene 5 D a D | _ ° 4 3 /~ Pela D : ° : é Z . . S . In “ : : . se¢/3 mete FS S$ AOC. Table ¥. > gellanenumn A 8 c D d fool he iy. 12 39 YOR (8 BF 2x 3S 143 36S S S SSHERS S R S 3995/8 S S SRKRRS S R Ss a 985/ry § i X RY RR R s 3985/39 S KR REtRS S R Ss 398 N= 5/1 R R RS —m R 298K |S R R KARR GS S S§ R HER|3F R Rk RsSS KR RK R K aca airs R RR S$sS RR RK K Werte: Kaa KR AP. SE C+D [8 <2» Ce De fia n30 Gs Pr BameD, + The lhe’ (1430) la Pevaptoge ators jf Merve: dyouily Cans SBR 33-637 6%. 1 gare os | E- suevtt, | elias Tipe “ot Parcaes C+ Dace hearerloganes arb theSelmaull ptoges eater el pee unc Miche SPB. 36-49-3906, 207-398 (1759). ¢ Aes, Berm plangen reg 0 equally om Apu 6 toh + Sanelly. his RRL ‘¢ HSee —» : fi te Lit fie o 4.76 fypm Aerayo, Leet i bil tfesan’ with rau be GRO bg OF hE, 87 ty | WB08 nou be faslig 2437 than ef 4. “qh Yr 305 7 Wyo ~ afd! teat4o. woh ome aa 4 | / ) Le clic eax ; Ca. aa “h f: 161-46" VE Segee C& 194 lac toa. Ww Seoul psp rare oF ae i 55° eee Seta 2g3 Coscutiah< Wy beecee- be wt 7 a5 5. Delick CL Cedi ’ ut! \ 12S, Lk Meld) { r . . deca Feet em Uy Thigoe i La py 4 UNE Tt, Be: Ct ty gl Asa rt SS J) Z 4 c! / fo vite ri , ke whe Se [. pot bo” ; } . : pe fey , . he hp aged rc Use > tifoas of Lt . Oo ofl, tae. Co ee Le ap Vee ygd i / il fe - coq 4 tp on c Del oe r 5 ° Z he k 7 f tof ee MG thos fp OF re { rote sl. Up Zune toto 5 wh mengele . a9 Dae sch Claneneptn teal Send WN dekiat’ bronbaclle Nel jd nk [A HOCH Ceteewomet fabian. (H-£0,) fekify & ul HCE « rackettal se Whe Ube: hed. # ™ i m4 7 Qe » fie rovlint (Hietien, qo Lf pagel big cfd aia « “é A Yres Lathe Add of 3 ty, gout had leer tee. Lek o Lhe fa, teh ad Fhorony . Re. Lm? £4 gee: be ¢ eps it a, ee pa os pre o. He: a alte ate * SLR hig ge KG - @ Ey TAAL | pee ard oS As vf b thee eR, oe 2. {o) Salsejed blbideprenty 1. The physiology of pollen. Amer. do. Jot. LL: 2! 417136. 1924, 2. Segregation for the waxy charactor in maisze pollen and difforentieal development of the male genetophyts. Amer, J. Bot. Il; 4650h69. 1924. (with J. H. MacGillivray). 3. Mendelian ratios ani the ganetophyte generation in angiosperms. Genatics 10: 359-394. 1925, +. Dyasmics of the waxy gene in maize. I. the carbohydrate regerves in encosperm and pollen. Genstice 11: 163-199. 1926. (with P. A. Abeue). 5. Differential sction of ths sugary gene in maize on two alternative Classes of male gametophytes. Genetics 12: 348-378. 1927. (with C. BR. Burnham). 6. The occurrence of semi-sterllity in maize. J. Heredity 18: 2660270, 1927, 7- Dynamics of the waxy gene in maize. II. The nature of waxy starch. Biochen. J. 22: 134921261. 1928. 8. Studies on the physiology of a gene. Quart. Rev. Biol. 4: 520-543, 1920. 9. The association of somisterile-1 in maize with two linkage groups. Genetica 16: 595=628. 1931. (with D. C. Cooper). 10. 4 structural change in the chromosomes of maize leading to chain forma- ticn. Amer. Nat. 66: 310-322. 1932. (with D. CG. Cooper) . aa = — * Ll. 4 strela of meies heuovygous for aegmentcl dmtoreheures irestvine both ends of the P-Br chromosome. Froec. Nat. Acad. Scie 18: HbilH7, 1932. (with D, C. Cooper). 12. The coumarin content of Melilotus dentats. Seience 86: Yell2, 1927. (with ¥. L. Roberts). 13. Chromosome homology in races of maize from different gcogrvephical roe gions. fmer. Nat. 7ls 582-587. 1937. (with D. C. Cooper). 14. Somatoplastic sterility in Medicago gativa. Science 90; Sh5—5i5. 1992. (with D. G. Cooper). 15. Tranalecationa in maico involving chromosome 3. Genstics 25 eo wy <9 oO f \2 & ME 1940. (with BR. 4%. Anderson) 16. Double fertilization and development of the seed in angiosperms. Bot. Gaz. 102: 1-25. 1940. (with D. C. Cooper). 17. Incomplete seed failure as a result of sematoplastic sterility. Genetics 26: 487-505. 1941. (with D. C. Cooper). 18. & hybrid between Hordeum jnbatum end Secale cereale reared from an artificially cultivated embryo. J. Heredity 35: 66675. 1944, (with D. G. Cooper and 1. B. Ausherman). 19. The antipodals in relation to abnormal endosperm behavior in Hordeum jubatum x Secele gereple hybrid seeds, Genetics 29: 391-406. 1947. (with D. C. Cooper). 20. Seed collapse following matings between diploid and tetraploid races of Lycopersicon pimpinellifolium. Genetics 30: 376-401. 1945. (with D. C. Cooper). 21. The endosperm in seed development. Bot. Rev. 13: 423-477, 479=5H1, 1947. (with D. C. Cooper). 22. Growth in vitro of immature Hordeum embryos. Science 106: 5H7=549 1947. (with Nancy Kent), Sel, NOs 1118-1126, 1954, (with P, Ge Bare! sy) -~ 18 = 230 fas andespermeembvyo relationship in cn emgonenens enemies, Repesct: officinele. Bot. Gaze lil: 239-153. 1989. (with B. C. Sooperje J, Hevetity Ms 24, The mutagenic action of mustard gas on Zea mays. 2322238. 1950. (with P. B. Gidson and Mo A. Stahmenn). 25. The stimulative effect of Hordeum enflospearms on the grewsh of dmmetuva plant embryos in vitro. Amer. J. Bot. 38: 2538256. 1951. (with Nancy Kent Ziebur). 26. Tha relation betweea light variegated and medium variegated pericore Genetics 37: 519-544. 1952. (with Ro. A. Bilan). in meige. Genetics 39: 724740, 195%. aio Tory light varlerated pericarp in maize. we 23, The relation between Modulater and Activater in matice. A pare gh PEod. MELG a SLO Es wrt “ “e » bet 2h, C. GINS 52; 14-138 (1708). (4) QIMS See Sej-76 a GINS. 98: d/S-9% Page 3 Mf Had Bee 23,222 /71S Aporefece tg os Yow dk FH. wegpege Ace + tit or “ye ay ay UhiAt roy Teakon. (eda : J. heck, Mubr.cb-f e Yor -d6 (4 752) DBA? webeya: “4 | Chany, hyp 49M 5, taht Pasa E10 5-18. 14 TAs + Sacth A opk L3l-4oa-(rpra) aloo - eg he te Py . Coren ‘ bet | / J Yolnan — hy (oben thille Vince hese helge TE edt Gougesns Mecustofl WY. 1939-%0, TC AL Guy 19% Sah 6 ee HAs ‘Wry Nat KeadbSe Jb, 7 rf Ut nbhe+ Hb role , Pec ok ap gon. DLV ORUEY Devise, L. J Bad YF: 725,