Диссертация (1144752), страница 43
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Miyawaki, M. Matsumoto-Kitano, T. Kakimoto //The Plant Journal - 2004. -V. 37, N 1 - P. 128-138.203. Miyazawa, H. The receptor-like kinase KLAVIER mediates systemicregulation of nodulation and non-symbiotic shoot development in Lotus japonicus /H. Miyazawa, E. Oka-Kira, N. Sato, H. Takahashi, G.-J. Wu, S. Sato, M. Hayashi,S. Betsuyaku, M. Nakazono, S. Tabata, K. Harada, S.
Sawa, H. Fukuda, M.Kawaguchi // Development - 2010. -V. 137, N 24 - P. 4317-4325.204. Moling, S. Nod factor receptors form heteromeric complexes and areessential for intracellular Infection in Medicago nodules / S. Moling, A.Pietraszewska-Bogiel, M. Postma, E. Fedorova, M.A. Hink, E. Limpens, T.W.J.Gadella, T. Bisseling // The Plant Cell Online - 2014. -N205.
Mortier, V. CLE peptides control Medicago truncatula nodulationlocally and systemically / V. Mortier, G.D. Herder, R. Whitford, W. Van de Velde,S. Rombauts, K. D'Haeseleer, M. Holsters, S. Goormachtig // Plant Physiology 2010. -V. 153, N 1 - P. 222-237.206. Mortier, V. Never too many? How legumes control nodule numbers /V. Mortier, M. Holsters, S. Goormachtig // Plant, Cell & Environment - 2012. -V.35, N 2 - P. 245-258.207.
Mulder, L. LysM domains of Medicago truncatula NFP proteininvolved in Nod factor perception. Glycosylation state, molecular modeling anddocking of chitooligosaccharides and Nod factors / L. Mulder, B. Lefebvre, J.Cullimore, A. Imberty // Glycobiology - 2006. -V. 16, N 9 - P. 801-809.208.
Müller, B. Arabidopsis cytokinin signaling pathway / B. Müller, J.Sheen // Science - 2007. -V. 2007, N 407 - P. 5.267209. Murakami, Y. Positional cloning identifies Lotus japonicus NSP2, aputative transcription factor of the GRAS family, required for NIN and ENOD40gene expression in nodule Initiation / Y. Murakami, H.
Miwa, H. ImaizumiAnraku, H. Kouchi, J.A. Downie, M. Kawaguchi, S. Kawasaki // DNA Research 2007. -V. 13, N 6 - P. 255-265.210. Murray, J.D. Vapyrin, a gene essential for intracellular progression ofarbuscular mycorrhizal symbiosis, is also essential for infection by rhizobia in thenodule symbiosis of Medicago truncatula / J.D.
Murray, R.R.D. Muni, I. TorresJerez, Y. Tang, S. Allen, M. Andriankaja, G. Li, A. Laxmi, X. Cheng, J. Wen, D.Vaughan, M. Schultze, J. Sun, M. Charpentier, G. Oldroyd, M. Tadege, P. Ratet,K.S. Mysore, R. Chen, M.K. Udvardi // The Plant Journal - 2011. -V. 65, N 2 - P.244-252.211. Nakagawa, T.
From defense to symbiosis: limited alterations in thekinase domain of LysM receptor-like kinases are crucial for evolution of legume–Rhizobium symbiosis / T. Nakagawa, H. Kaku, Y. Shimoda, A. Sugiyama, M.Shimamura, K. Takanashi, K. Yazaki, T. Aoki, N. Shibuya, H. Kouchi // The PlantJournal - 2011. -V. 65, N 2 - P. 169-180.212. Norberg, M.
The BLADE ON PETIOLE genes act redundantly tocontrol the growth and development of lateral organs / M. Norberg, M. Holmlund,O. Nilsson // Development - 2005. -V. 132, N 9 - P. 2203-2213.213. Novák, K. Early action of pea symbiotic gene NOD3 is confirmed byadventitious root phenotype / K. Novák // Plant Science - 2010. -V. 179, N 5 - P.472-478.214. Novák, K. Pleiotropy of pea RisfixC supernodulation mutation issymbiosis-independent / K.
Novák, L. Lisá, V. Škrdleta // Plant and Soil - 2011. V. 342, N 1 - P. 173-182.215. Oelkers, K. Bioinformatic analysis of the CLE signaling peptide family/ K. Oelkers, N. Goffard, G.F. Weiller, P.M. Gresshoff, U. Mathesius, T. Frickey //BMC Plant Biology - 2008. -V. 8, N 1 - P. 1-15.268216. Oka-Kira, E. klavier (klv), A novel hypernodulation mutant of Lotusjaponicus affected in vascular tissue organization and floral induction / E. OkaKira, K. Tateno, K.-i. Miura, T. Haga, M. Hayashi, K. Harada, S. Sato, S. Tabata,N.
Shikazono, A. Tanaka, Y. Watanabe, I. Fukuhara, T. Nagata, M. Kawaguchi //The Plant Journal - 2005. -V. 44, N 3 - P. 505-515.217. Oka-Kira, E. Long-distance signaling to control root nodule number /E. Oka-Kira, M. Kawaguchi // Current Opinion in Plant Biology - 2006. -V. 9, N 5- P. 496-502.218.
Okamoto, S. Nod Factor/nitrate-induced CLE genes that drive HAR1mediated systemic regulation of nodulation / S. Okamoto, E. Ohnishi, S. Sato, H.Takahashi, M. Nakazono, S. Tabata, M. Kawaguchi // Plant and Cell Physiology 2009. -V. 50, N 1 - P. 67-77.219. Okamoto, S. Root-derived CLE glycopeptides control nodulation bydirect binding to HAR1 receptor kinase / S. Okamoto, H. Shinohara, T.
Mori, Y.Matsubayashi, M. Kawaguchi // Nature Communications - 2013. -V. 4, N - P.2191.220. Oldroyd, G.E.D. Coordinating nodule morphogenesis with rhizobialinfection in legumes / G.E.D. Oldroyd, J.A. Downie // Annual Review of PlantBiology - 2008. -V. 59, N 1 - P. 519-546.221. Oldroyd, G.E.D. Evidence for structurally specific negative feedback inthe Nod factor signal transduction pathway / G.E.D. Oldroyd, R.M.
Mitra, R.J.Wais, S.R. Long // The Plant Journal - 2001. -V. 28, N 2 - P. 191-199.222. Op den Camp. A phylogenetic strategy based on a legume-specificwhole genome duplication yields symbiotic cytokinin type-A response regulators /R.H.M. Op den Camp, S. De Mita, A. Lillo, Q. Cao, E. Limpens, T. Bisseling, R.Geurts // Plant Physiology - 2011. -V.
157, N 4 - P. 2013-2022.223. Ori, N. Mechanisms that control knox gene expression in theArabidopsis shoot / N. Ori, Y. Eshed, G. Chuck, J.L. Bowman, S. Hake //Development - 2000. -V. 127, N 24 - P. 5523-5532.269224. Ortu, G. Plant genes related to gibberellin biosynthesis and signalingare differentially regulated during the early stages of AM fungal interactions / G.Ortu, R.
Balestrini, P.A. Pereira, J.D. Becker, H. Küster, P. Bonfante // MolecularPlant - 2012. -V. 5, N 4 - P. 951-954.225. Osipova, M.A. Peculiarities of meristem-specific WOX5 geneexpression during nodule organogenesis in legumes / M.A. Osipova, E.A. Dolgikh,L.A. Lutova // Russian Journal of Developmental Biology - 2011. -V. 42, N 4 - P.226-237.226. Osipova, M.A. WUSCHEL-RELATED HOMEOBOX5 gene expressionand interaction of CLE peptides with components of the systemic control add twopieces to the puzzle of autoregulation of nodulation / M.A. Osipova, V.
Mortier,K.N. Demchenko, V.E. Tsyganov, I.A. Tikhonovich, L.A. Lutova, E.A. Dolgikh,S. Goormachtig // Plant Physiology - 2012. -V. 158, N 3 - P. 1329-1341.227. Ottoline Leyser, H.M. Characterisation of three shoot apical meristemmutants of Arabidopsis thaliana / H.M. Ottoline Leyser, I.J. Furner // Development- 1992. -V. 116, N 2 - P. 397-403.228. Ovchinnikova, E. IPD3 controls the formation of nitrogen-fixingsymbiosomes in pea and Medicago spp / E. Ovchinnikova, E.-P.
Journet, M.Chabaud, V. Cosson, P. Ratet, G. Duc, E. Fedorova, W. Liu, R.O. den Camp, V.Zhukov, I. Tikhonovich, A. Borisov, T. Bisseling, E. Limpens // Molecular PlantMicrobe Interactions - 2011. -V. 24, N 11 - P. 1333-1344.229. Ovchinnikova, E. IPD3 controls the formation of nitrogen-fixingsymbiosomes in pea and Medicago spp / E. Ovchinnikova, E.-P.
Journet, M.Chabaud, V. Cosson, P. Ratet, G. Duc, E. Fedorova, W. Liu, R.O. den Camp, V.Zhukov, I. Tikhonovich, A. Borisov, T. Bisseling, E. Limpens // Molecular PlantMicrobe Interactions - 2011. -V. 24, N 11 - P. 1333-1344.230. Ovtsyna, A.O. Nod factors induce Nod factor cleaving enzymes in pearoots. Genetic and pharmacological approaches indicate different activationmechanisms / A.O.
Ovtsyna, E.A. Dolgikh, A.S. Kilanova, V.E. Tsyganov, A.Y.270Borisov, I.A. Tikhonovich, C. Staehelin // Plant Physiology - 2005. -V. 139, N 2 P. 1051-1064.231. Pacios-Bras, C. Auxin distribution in Lotus japonicus during rootnodule development / C. Pacios-Bras, H.R.M. Schlaman, K. Boot, P. Admiraal, J.Mateos Langerak, J. Stougaard, H.P. Spaink // Plant Molecular Biology - 2003. -V.52, N 6 - P. 1169-1180.232. Panter, S. Identification with proteomics of novel proteins associatedwith the peribacteroid membrane of soybean root nodules / S.
Panter, R. Thomson,G. de Bruxelles, D. Laver, B. Trevaskis, M. Udvardi // Molecular Plant-MicrobeInteractions - 2000. -V. 13, N 3 - P. 325-333.233. Parniske, M. Arbuscular mycorrhiza: the mother of plant rootendosymbioses / M. Parniske // Nat Rev Microbiol - 2008. -V. 6, N234. Pautot, V. KNAT2: Evidence for a link between knotted-like genes andcarpel development / V. Pautot, J.
Dockx, O. Hamant, J. Kronenberger, O.Grandjean, D. Jublot, J. Traas // The Plant Cell - 2001. -V. 13, N 8 - P. 1719-1734.235. Perret, X. Molecular basis of symbiotic promiscuity / X. Perret, C.Staehelin, W.J. Broughton // Microbiology and Molecular Biology Reviews 2000. -V.
64, N 1 - P. 180-201.236. Petrášek, J. Auxin transport routes in plant development / J. Petrášek, J.Friml // Development - 2009. -V. 136, N 16 - P. 2675-2688.237. Petutschnig, E.K. The Lysin motif receptor-like kinase (LysM-RLK)CERK1 is a major chitin-binding protein in Arabidopsis thaliana and subject tochitin-inducedphosphorylation/E.K.Petutschnig,A.M.E.Jones,L.Serazetdinova, U.
Lipka, V. Lipka // Journal of Biological Chemistry - 2010. -V.285, N 37 - P. 28902-28911.238. Pietraszewska-Bogiel, A. Interaction of Medicago truncatula Lysinmotif receptor-like kinases, NFP and LYK3, produced in Nicotiana benthamianainduces defence-like responses / Pietraszewska-Bogiel, A., B. Lefebvre, M.A.Koini, D. Klaus-Heisen, F.L.W.
Takken, R. Geurts, J.V. Cullimore, T.W.J. Gadella271// PLoS ONE - 2013. -V. 8, N 6 - P. e65055.239. Plet, J. MtCRE1-dependent cytokinin signaling integrates bacterial andplant cues to coordinate symbiotic nodule organogenesis in Medicago truncatula /J. Plet, A. Wasson, F. Ariel, C. Le Signor, D. Baker, U. Mathesius, M. Crespi, F.Frugier // The Plant Journal - 2011. -V. 65, N 4 - P. 622-633.240.
Radutoiu, S. LysM domains mediate lipochitin–oligosacchariderecognition and Nfr genes extend the symbiotic host range / S. Radutoiu, L.H.Madsen, E.B. Madsen, A. Jurkiewicz, E. Fukai, E.M.H. Quistgaard, A.S.Albrektsen, E.K. James, S. Thirup, J. Stougaard // The EMBO Journal - 2007. -V.26, N 17 - P. 3923-3935.241. Radutoiu, S. Plant recognition of symbiotic bacteria requires two LysMreceptor-like kinases / S. Radutoiu, L.H. Madsen, E.B. Madsen, H.H. Felle, Y.Umehara, M. Gronlund, S.