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MAIN FUNCTION OF UNINFECTED CELLS IN SOYBEAN ROOT NODULES(PDF)

《大豆科学》[ISSN:1000-9841/CN:23-1227/S]

Issue:
2006年03期
Page:
304-308
Research Field:
Publishing date:

Info

Title:
MAIN FUNCTION OF UNINFECTED CELLS IN SOYBEAN ROOT NODULES
Author(s):
Han Shanhua
(Cell Biology Laboratory ,Sichuan Normal University , Chengdu 610066)
Keywords:
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PACS:
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DOI:
10.11861/j.issn.1000-9841.2006.03.0304
Abstract:

References:

1 韩善华.内质网在细菌周膜形成中的作用[ J].植物学报, 1991,33(8):569-573.

2 韩善华.大豆根瘤中公共细菌周膜形成的一种特殊方式[ J].微生物学报, 1993, 33(6):400-404.
3 韩善华, 周向军.侵染细胞中一种内含物的组化研究[ J].实验生物学报, 1994, 27(2):251-258.
4 Kanayama Y, Kinura K , Kanamura Y, Ike T .Purilication andcharacterization of nitrate reductase from nodule cytosol of soy-bean[ J].Plants Physiol Plantarum , 1999, 105:396-401.
5 Fujikake H, Yashima H, Sato T , et al .Rapid and reversible ni-trate inhibition of nodule growth and N 2 fixation activity in soy-bean (Glycin max (L.)Merr).Siol Sci.and Plant Nutr , 2002,48:211-217.
6 Serral R, Vasquze DH, Dervon JJ.Effects of salt on nitrogen fixation,oxygen diffusion, and ion ditribution in soybean, common bean , andalfalfa[ J].J Plant Nutr, 1998, 21:475-488.
7 Le T hi -Phuong Hoa , Nomura M , Kajiwara H , et al.Proteomicanaly sis on sy stemic differentiation of mitochondria in soybeannodules[ J].Plant Cell Physiol , 2004, 45:300-308.
8 Newcomb W , Sippel D , Peterson RL .The early morphogenesisof Glycine max and Pisum sativum root nodules[ J].Can J Bot ,1979, 57:2603-2616
9 Newcomb EH, Selker JM L, Tandon SR, et al.Uninfected cellsin ureide and amide ex porting legume root nodules[ C].In Nitro-gen fixation and CO 2 metabolism, Edited by RL Ludden and JEBurris, Elsevers, New Yo rk , 1985, 31-39.
10 Selker JML , Newcomb EH.Special relationship between unin-fected and uninfected cells in root nodules of soybean[ J].Planta ,1985, 165:446-454.
11 韩善华, 潘元翔.非侵染细胞的形态特征[ J].细胞生物学杂志,1992, 14(4):145-148.
12 Bergersen FG , Goodchild DJ.Aeration pathway s in soybean rootnodules[ J].Aust J Biol Sci, 1973, 26:729-740.
13 Harper JF, Akau S, Kouchi H .Changes in concentration ofleghemoglibin componentsin hy pernoduleation mutants of soy-bean[ J].Soil Sci .and Plant Nutr, 1997, 43:1091-1096.
14 Arrese-Igor C, Minchin FR, Gordon AJ, et al.Posible causes ofthe physiological decline in soybean nitrogen fixation in theprosence of nitrogen[ J].J Ex perim Bot .1997, 48:905-913.
15 Arrese-Igor C, Gordon AJ, Minchin FR, et al.Nitrata entre andnitrite formation in infected region of soybean nodules[ J].J Ex-perim Bot , 1998, 49:41-48.
16 VandenBosch KA , Newcomb EH.The occurrence of leghemglo-bin protein in the uninfected interstilial cells of soybeanroot nod-ules[ J].Planta, 1988, 175:442-451.
17 Dalton DA , Baird LM , Labgeberg L, et al .Subcellular localizationof oxygen defense enzymes in soybean (Glycine max [ L .]Merr.)root nodules[ J].Plant Physiol., 1993, 102:461-489.
18 Layzell DB, Gaiyo ST , Hunt S.Model of gas exchange and diffu-sion in legume nodules[ J].Planta, 1988, 137:117-127.
19 Hunt S, Gaiyo ST , Layzell DB.Model of gas exchange and diffu-sion in legume nodules[ J].Planta, 1988, 137:128-141.
20 Neo HH , Layzell DB.Pheom glutanine and the regulation of O 2diffusion in legume nodules[ J] .Phsiol Plantarum , 1997, 113:259 -267.
21 Selker JML .T hree-dimensional organization of uninfected tissuein soybean root nodules and its relation to cell specialization inthe contral region[ J] .Protoplasma , 1988, 147:178-191.
22 Werner D, Moschel E.Differentiation of nodules of Glycine max[ J].Planta, 1978, 141: 69-177.
23 韩善华, 郑国昌.巨形线粒体形成机理的探讨[ J] .大豆科学,1994, 13(1):27-31.
24 Han Shanhua, Zheng Guochang .Formation and features of closeassociation of mitochondrion-plastid[ J] .Chinese Science Bulletin,1991, 36(19):1636-1640.
25 Postgate J .Consequences of the transfer of nitrogen fixing genesto new hosts[ J] .Annbio , 1977, 6:176-180.
26 Heytler PG , Reddy GS, Hardy RWF .In vivo energetics of sym-biotic nitrogen fixation in soybeans .In Nitrogen fixation and CO 2metabolism[ R] .Edited by PL Ludden and JE Burris[ E] .Elsevi-er, New York, 1985, 283-292.
27 Stitt M , K rapp A.The interaction between elevated carbon diox-ide and nitrogen nutrition:the physiological and molecular back-ground[ J] .Plant Cell and Environ, 1999, 22:583-562.
28 Gordon AJ, Skot L, James CL, et al .Short-term metabolism re-sponses of soybean root nodules to nitrare[ J] .J Experim Bot ,2002, 53:423-428.
29 Fujikake H, Yamazaki A , Ohtake N , et al.Quick and reversibleinhibition of soybean root nodules growth by nitrate involves adecrease in sucrose supply to nodules[ J] .J Ex perim Bot .2003,54:1379-1388.
30 Gorton AJ, Minchin FR, James CL , Komina O .Sucrose synthe-sis in legume nodules for nitrogen fixation[ J] .Plant Physiol,1999, 120:867-877.
31 Hostak MS , Henson CA , Duke SH, et al.Starch-granule distri-bution between cell ty pes of alfalfa nodules as affected by sy mbi-otic development[ J] .Can J Bot .1987, 65:1108-1115.
32 Streeter JG .Interg ration of plant and bacterial metabolism in ni-trogen fixing system[ A] .In Nitrogen Fixation:Fundomentalsand Applications edited by I A Tikhonovich et al, Kuwer Aca-demic Publisher, London, 1995, 67-76.
33 McClure PR , Isread DW.T ransport of nitrogen in the xylem ofsoybean plants[ J] .Plant Physiol , 1979, 64:411-416.
34 Beevers S.Microbodies in higher plants[ J] .Annu Rew PlantPhy siol, 1979, 30:153-193.
35 Hanks JF , Tolbert NE, Schubert KR .Localization of emzymesof ureide biosynthesis in perixisomes and microsomes of nodules[ J] .Plant Physiol, 1981, 68:65-69.
36 Newcomb EH , T andon SR.Uninfected cells of soy bean root nod-ules:Ultrastructure suggests key role in ureide production[ J] .Science, 1981, 212:1394-13969.
37 Cohen HP , Gautam S, Lee K , et al .Soybean root nodules ultra-structure during dark-induced sress and recovery[ J] .Protoplas-ma , 1986, 132:69-75.
38 韩善华, Yang AF.大豆根瘤的超微结构特征[ J].微生物学报,1987, 27(3):217-222.
39 Newcomb EH , Kowal RR.Ultrastructural specialization for ure-ide production in uninfected cells of soybean root nodules[ J] .Protoplasma, 1985, 125:1-12.
40 Bergman H, Preddie E, Verma DPS.Nodulin-35 a subunit of specificuricase(uricase11)induced and localized in uninfected cells of soybeannodules[ J] .EMBO J, 1983, 2:2333-2339.
41 Hanks KR, Schubert NE, Tolbert NE .Catalase uricase and allantoin-ase from soybean nodules[ J] .Plant Physiol, 1980, 65:107-111.
42 Hanks JF , Schubert KR, Tolbert NE.Isolation and characteriza-tion infected and uninfected cells from soybean nodules[ J] .PlantPhysiol, 1983, 71:869-873.
43 Nguyen T , Zelekowska M , Forster LL , et al.Primary structureof the soybean nodule -35 gene encoding uricase 11 localized inthe proxisomes of uninfected cells of nodules[ J] .Proc Natl AcadSci USA , 1985, 82:5040-5044.
44 VandenBosch KA , Newcomb EH.Immunogold localization ofnodules speciafic ureicase in developing soybean root nodules[ J] .Planta , 1986, 167:425-436.
45 VandenBosch KA .Light and electron microscopic visualization ofuricase by immunogold labeling of section of resinembedded soy-bean nodules[ J] .J Microsc, 1986.143:187-197.
46 Newcomb EH , Kaneko Y , VandenBosch KA .Specialization ofthe inner co rtex for ureide production in soybean root nodules[ J] .Protoplasma , 1989, 150:150-159.
47 Kaneko Y , Newcomb EH.Cytochemical localization of uricaseand catalase in developing root nodules of soybean[ J] .Protoplas-ma, 1987, 140:1-12.
48 Marks I, Spread JI.T he localization of enzymes in fixed sectionsof soybean root nodules by electron microscopy[ J] .J Cell Sci ,1974, 16:623-637.
49 Vaughn KC.Structural and cytochemical localization of threespecialized peroxisomes ty pes in soybean[ J] .Physiol Plantarum ,1985, 64:1-12.
50 Vaughn KC, Duke SD, Duke SH , et al.Ultrastructural localiza-tion of urate oxidase in nodules of Sesbania exalteta , Glycine max.and Medicago sativa[ J] .Histochem, 1982, 74:309-318.
51 Suganuma N , Kitou M , Yamamoto Y.Carbon metabolim in rela-tion to cellular organination of soybean root nodules and respira-tion of mitochondria aiced by leghemoglobin[ J] .Plant Cell Physi-ol, 1987, 28:113-122.
52 Boland MJ, Blevins DG , Schubert KR, et al.Enzy mes of amideand ureide biogenesis in developing soybean noduled[ J] .PlantPhysiol, 1982, 69:1334-1338.
53 Sprent JI.Root nodule anatomy ty pe of ex port product and evolu-tionary by origin in some legumes[ J] .Plant Cell Environ, 1980,3:35-43, 50.
54 T riplett EW, Blevins DG , Randall DD.Allantoic acid synthesisin soybean root nodule cytosol via xanthine dehydrogenase[ J] .Plant Physiol, 1980, 65:1203-1206.
55 Schubert K R.Products of biological nitrogen fixation in higherplants synthesis transport and metabolism[ J] .Ann Rew PlantPhysiol, 1986, 37:539-574.

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Last Update: 2016-12-15