Диссертация (1144724), страница 69
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— 2001. — V. 128, № 9. — P. 15071518.79. Cebolla A., María Vinardell J., Kiss E., Oláh B., Roudier F., Kondorosi A.,Kondorosi E. The mitotic inhibitor ccs52 is required for endoreduplication andploidy-dependent cell enlargement in plants // The EMBO Journal. — 1999. — V.18, № 16.
— P. 4476-4484.80. Celenza J.L., Grisafi P.L., Fink G.R. A pathway for lateral root formation inArabidopsis thaliana // Genes and Development. — 1995. — V. 9, № 17. — P.2131-2142.81. Chan P.K., Biswas B., Gresshoff P.M. Classical ethylene insensitive mutantsof the Arabidopsis EIN2 orthologue lack the expected ‘hypernodulation’ responsein Lotus japonicus // Journal of Integrative Plant Biology.
— 2013. — V. 55, № 4.— P. 395-408.82. Charpentier M., Bredemeier R., Wanner G., Takeda N., Schleiff E., ParniskeM. Lotus japonicus CASTOR and POLLUX are ion channels essential forperinuclear calcium spiking in legume root endosymbiosis // The Plant Cell. —2008. — V. 20, № 12. — P. 3467-3479.83. Charpentier M., Sun J., Martins T.V., Radhakrishnan G.V., Findlay K.,Soumpourou E., Thouin J., Véry A.-A., Sanders D., Morris R.J., Oldroyd G.E.D.Список литературы456Nuclear-localized cyclic nucleotide–gated channels mediate symbiotic calciumoscillations // Science.
— 2016. — V. 352, № 6289. — P. 1102-1105.84. Chen J., Doyle C., Qi X., Zheng H. The endoplasmic reticulum: a socialnetwork in plant cells // Journal of Integrative Plant Biology. — 2012. — V. 54, №11. — P. 840-850.85. Chen R., Hilson P., Sedbrook J., Rosen E., Caspar T., Masson P.H. TheArabidopsis thaliana AGRAVITROPIC 1 gene encodes a component of the polarauxin-transport efflux carrier // Proceedings of the National Academy of Sciencesof the United States of America.
— 1998. — V. 95, № 25. — P. 15112-15117.86. Chen Y., He Y., Yang Y., Yu Y., Zheng S., Tian G., Luo Y., Wong M.Effect of cadmium on nodulation and N2-fixation of soybean in contaminated soils// Chemosphere. — 2003. — V. 50, № 6. — P. 781-787.87. Cheng H.-P., Walker G.C.
Succinoglycan is required for initiation andelongation of infection threads during nodulation of alfalfa by Rhizobium meliloti// Journal of Bacteriology. — 1998. — V. 180, № 19. — P. 5183-5191.88. Cho M.-J., Harper J.E. Effect of abscisic acid application on rootisoflavonoid concentration and nodulation of wild-type and nodulation-mutantsoybean plants // Plant and Soil.
— 1993. — V. 153, № 1. — P. 145-149.89. Chua K.Y., Pankhurst C.E., Macdonald P.E., Hopcroft D.H., Jarvis B.D.,Scott D.B. Isolation and characterization of transposon Tn5-induced symbioticmutants of Rhizobium loti // Journal of Bacteriology. — 1985. — V. 162, № 1. —P. 335-343.90. Chugh L.K., Gupta V.K., Sawhney S.K. Effect of cadmium on enzymes ofnitrogen metabolism in pea seedlings // Phytochemistry.
— 1992. — V. 31, № 2.— P. 395-400.91. Chungopast S., Hirakawa H., Sato S., Handa Y., Saito K., Kawaguchi M.,Tajima S., Nomura M. Transcriptomic profiles of nodule senescence in Lotusjaponicus and Mesorhizobium loti symbiosis // Plant Biotechnology. — 2014. —V. 31, № 4. — P.
345-349.92. Clark D.G., Gubrium E.K., Barrett J.E., Nell T.A., Klee H.J. Root formationin ethylene-insensitive plants // Plant Physiology. — 1999. — V. 121, № 1. — P.53-60.93. Clemens S. Molecular mechanisms of plant metal tolerance and homeostasis// Planta. — 2001. — V.
212, № 4. — P. 475-486.94. Clemens S. Toxic metal accumulation, responses to exposureand mechanisms of tolerance in plants // Biochimie. — 2006. — V. 88, № 11. —P. 1707-1719.95. Combier J.-P., Frugier F., de Billy F., Boualem A., El-Yahyaoui F., MoreauS., Vernié T., Ott T., Gamas P., Crespi M., Niebel A. MtHAP2-1 is a keytranscriptional regulator of symbiotic nodule development regulated bymicroRNA169 in Medicago truncatula // Genes and Development. — 2006. — V.20, № 22. — P.
3084-3088.96. Combier J.-P., Küster H., Journet E.-P., Hohnjec N., Gamas P., Niebel A.Evidence for the involvement in nodulation of the two small putative regulatoryСписок литературы457peptide-encoding genes MtRALFL1 and MtDVL1 // Molecular Plant-MicrobeInteractions. — 2008. — V. 21, № 8.
— P. 1118-1127.97. After the green revolution: sustainable agriculture for development. /Conway G.R., Barbier E.B.: Routledge, 2013.98. Cooper J. Early interactions between legumes and rhizobia: disclosingcomplexity in a molecular dialogue // Journal of Applied Microbiology. — 2007.— V. 103, № 5. — P. 1355-1365.99. Cooper J.B., Long S.R. Morphogenetic rescue of Rhizobium melilotinodulation mutants by trans-zeatin secretion // The Plant Cell. — 1994.
— V. 6, №2. — P. 215-225.100. Cooper J.E. Multiple responses of rhizobia to flavonoids during legume rootinfection // Advances in Botanical Research. — 2004. — V. 41. — P. 1-62.101. Costanzo M.E., Andrade A., del Carmen Tordable M., Cassán F., Abdala G.Production and function of jasmonates in nodulated roots of soybean plantsinoculated with Bradyrhizobium japonicum // Archives of Microbiology. — 2012.— V. 194, № 10.
— P. 837-845.102. Courty P.E., Smith P., Koegel S., Redecker D., Wipf D. Inorganic NitrogenUptake and Transport in Beneficial Plant Root-Microbe Interactions // CriticalReviews in Plant Sciences. — 2015. — V. 34, № 1-3. — P. 4-16.103. Crespi M.D., Jurkevitch E., Poiret M., d'Aubenton-Carafa Y., Petrovics G.,Kondorosi E., Kondorosi A.
enod40, a gene expressed during noduleorganogenesis, codes for a non-translatable RNA involved in plant growth // TheEMBO Journal. — 1994. — V. 13, № 21. — P. 5099-5112.104. Croser C., Bengough A.G., Pritchard J. The effect of mechanical impedanceon root growth in pea (Pisum sativum). II. Cell expansion and wall rheology duringrecovery // Physiologia Plantarum. — 2000. — V.
109, № 2. — P. 150-159.105. Currier H.B., Strugger S. Aniline blue and fluorescence microscopy ofcallose in bulb scales of Allium cepa L // Protoplasma. — 1956. — V. 45, № 4. —P. 552-559.106. D'Haeze W., De Rycke R., Mathis R., Goormachtig S., Pagnotta S.,Verplancke C., Capoen W., Holsters M. Reactive oxygen species and ethylene playa positive role in lateral root base nodulation of a semiaquatic legume //Proceedings of the National Academy of Sciences of the United States of America.— 2003. — V. 100, № 20. — P.
11789-11794.107. D’haeseleer K., De Keyser A., Goormachtig S., Holsters M. Transcriptionfactor MtATB2: about nodulation, sucrose and senescence // Plant and CellPhysiology. — 2010. — V. 51, № 9. — P. 1416-1424.108. Das A., Ghosh P. Role of legumes in sustainable agriculture and foodsecurity: an Indian perspective // Outlook on Agriculture.
— 2012. — V. 41, № 4.— P. 279-284.109. David M., Daveran M.-L., Batut J., Dedieu A., Domergue O., Ghai J., HertigC., Boistard P., Kahn D. Cascade regulation of nif gene expression in Rhizobiummeliloti // Cell. — 1988. — V. 54, № 5. — P. 671-683.Список литературы458110. Davidson A.L., Newcomb W. Organization of microtubules in developingpea root nodule cells // Canadian Journal of Botany. — 2001. — V.
79, № 7. — P.777-786.111. Davis E.O., Evans I.J., Johnston A.W. Identification of nodX, a gene thatallows Rhizobium leguminosarum biovar viciae strain TOM to nodulateAfghanistan peas // Molecular and General Genetics. — 1988. — V. 212, № 3. —P. 531-535.112. de Billy F., Grosjean C., May S., Bennett M., Cullimore J.V. Expressionstudies on AUX1-like genes in Medicago truncatula suggest that auxin is requiredat two steps in early nodule development // Molecular Plant-Microbe Interactions.— 2001.
— V. 14, № 3. — P. 267-277.113. De Carvalho-Niebel F., Timmers A.C.J., Chabaud M., Defaux-Petras A.,Barker D.G. The Nod factor-elicited annexin MtAnn1 is preferentially localised atthe nuclear periphery in symbiotically activated root tissues of Medicagotruncatula // The Plant Journal. — 2002. — V. 32, № 3. — P. 343-352.114. de Ruijter N.C., Bisseling T., Emons A.M.C. Rhizobium Nod factors inducean increase in sub-apical fine bundles of actin filaments in Vicia sativa root hairswithin minutes // Molecular Plant-Microbe Interactions.
— 1999. — V. 12, № 9.— P. 829-832.115. de Vries F.T., Bardgett R.D. Plant–microbial linkages and ecosystemnitrogen retention: lessons for sustainable agriculture // Frontiers in Ecology andthe Environment. — 2012. — V. 10, № 8. — P. 425-432.116. de Zélicourt A., Diet A., Marion J., Laffont C., Ariel F., Moison M., ZahafO., Crespi M., Gruber V., Frugier F. Dual involvement of a Medicago truncatulaNAC transcription factor in root abiotic stress response and symbiotic nodulesenescence // The Plant Journal. — 2012. — V. 70, № 2.
— P. 220-230.117. Dean R.M., Rivers R.L., Zeidel M.L., Roberts D.M. Purification andfunctional reconstitution of soybean nodulin 26. An aquaporin with water andglycerol transport properties // Biochemistry. — 1999. — V. 38, № 1. — P. 347353.118. Debellé F., Rosenberg C., Dénarié J. The Rhizobium, Bradyrhizobium, andAzorhizobium NodC proteins are homologous to yeast chitin synthases //Molecular Plant-Microbe Interactions. — 1992.
— V. 5. — P. 443-443.119. Degenhardt T.L., Larue T.A., Paul E.A. Investigation of a non-nodulatingcultivar of Pisum sativum // Canadian Journal of Botany. — 1976. — V. 54, № 14.— P. 1633-1636.120. del Giudice J., Cam Y., Damiani I., Fung-Chat F., Meilhoc E., Bruand C.,Brouquisse R., Puppo A., Boscari A. Nitric oxide is required for an optimalestablishment of the Medicago truncatula–Sinorhizobium meliloti symbiosis //New Phytologist. — 2011.
— V. 191, № 2. — P. 405-417.121. Delay C., Imin N., Djordjevic M.A. CEP genes regulate root and shootdevelopment in response to environmental cues and are specific to seed plants //Journal of Experimental Botany. — 2013. — V. 64, № 17. — P. 5383-5394.122. Delgado M.J., Bedmar E.J., Downie J.A. Genes involved in the formationand assembly of rhizobial cytochromes and their role in symbiotic nitrogenСписок литературы459fixation // Advances in Microbial Physiology / Poole R. K.Academic Press, 1998.— P. 191-231.123. Delves A.C., Higgins A., Gresshoff P. Shoot apex removal does not alterautoregulation of modulation in soybean // Plant, Cell and Environment.