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1
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85015652617
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Plant signalling in symbiosis and immunity
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Zipfel, C., Oldroyd, G.E.D., Plant signalling in symbiosis and immunity. Nature 543 (2017), 328–336.
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(2017)
Nature
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, pp. 328-336
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Zipfel, C.1
Oldroyd, G.E.D.2
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2
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84946186024
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Transcriptome analysis highlights preformed defences and signalling pathways controlled by the prAe1 quantitative trait locus (QTL), conferring partial resistance to Aphanomyces euteiches in Medicago truncatula
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Badis, Y., Bonhomme, M., Lafitte, C., Huguet, S., Balzergue, S., Dumas, B., Jacquet, C., Transcriptome analysis highlights preformed defences and signalling pathways controlled by the prAe1 quantitative trait locus (QTL), conferring partial resistance to Aphanomyces euteiches in Medicago truncatula. Mol Plant Pathol 16 (2015), 973–986.
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Mol Plant Pathol
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Badis, Y.1
Bonhomme, M.2
Lafitte, C.3
Huguet, S.4
Balzergue, S.5
Dumas, B.6
Jacquet, C.7
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3
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85027158028
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Ethylene signaling is important for isoflavonoid-mediated resistance to Rhizoctonia solani in roots of Medicago truncatula
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Liu, Y., Hassan, S., Kidd, B.N., Garg, G., Mathesius, U., Singh, K.B., Anderson, J.P., Ethylene signaling is important for isoflavonoid-mediated resistance to Rhizoctonia solani in roots of Medicago truncatula. Mol Plant Microbe Interact 30 (2017), 691–700.
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Mol Plant Microbe Interact
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Liu, Y.1
Hassan, S.2
Kidd, B.N.3
Garg, G.4
Mathesius, U.5
Singh, K.B.6
Anderson, J.P.7
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4
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84880310791
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MtQRRS1, an R-locus required for Medicago truncatula quantitative resistance to Ralstonia solanacearum
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Ben, C., Debellé F., Berges, H., Bellec, A., Jardinaud, M.F., Anson, P., Huguet, T., Gentzbittel, L., Vailleau, F., MtQRRS1, an R-locus required for Medicago truncatula quantitative resistance to Ralstonia solanacearum. New Phytol 199 (2013), 758–772.
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New Phytol
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Ben, C.1
Debellé, F.2
Berges, H.3
Bellec, A.4
Jardinaud, M.F.5
Anson, P.6
Huguet, T.7
Gentzbittel, L.8
Vailleau, F.9
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5
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77950428777
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Arabidopsis and the plant immune system
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Nishimura, M.T., Dangl, J.L., Arabidopsis and the plant immune system. Plant J 61 (2010), 1053–1066.
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Plant J
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Nishimura, M.T.1
Dangl, J.L.2
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6
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84876408954
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NFP, a LysM protein controlling Nod factor perception, also intervenes in Medicago truncatula resistance to pathogens
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This study reports the role of NFP in resistance fungal and oomycete root pathogen by the interplay of cellular processes at the transcriptomic level rather than classic immune responses.
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Rey, T., Nars, A., Bonhomme, M., Bottin, A., Huguet, S., Balzergue, S., Jardinaud, M.-F., Bono, J.-J., Cullimore, J., Dumas, B., et al. NFP, a LysM protein controlling Nod factor perception, also intervenes in Medicago truncatula resistance to pathogens. New Phytol 198 (2013), 875–886 This study reports the role of NFP in resistance fungal and oomycete root pathogen by the interplay of cellular processes at the transcriptomic level rather than classic immune responses.
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New Phytol
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, pp. 875-886
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Rey, T.1
Nars, A.2
Bonhomme, M.3
Bottin, A.4
Huguet, S.5
Balzergue, S.6
Jardinaud, M.-F.7
Bono, J.-J.8
Cullimore, J.9
Dumas, B.10
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7
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84925236395
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Medicago truncatula symbiosis mutants affected in the interaction with a biotrophic root pathogen
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This article is the first comprehensive screening of mutualist defective mutant with a biotrophic root pathogens. It showed that the CSSP does not control per se the interactions with pathogens but other individual symbiotic genes can act in resistance or compatibility with the disease. Mutualistic genes acting independently of the CSSP can also affect interaction with pathogens.
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Rey, T., Chatterjee, A., Buttay, M., Toulotte, J., Schornack, S., Medicago truncatula symbiosis mutants affected in the interaction with a biotrophic root pathogen. New Phytol 206 (2015), 497–500 This article is the first comprehensive screening of mutualist defective mutant with a biotrophic root pathogens. It showed that the CSSP does not control per se the interactions with pathogens but other individual symbiotic genes can act in resistance or compatibility with the disease. Mutualistic genes acting independently of the CSSP can also affect interaction with pathogens.
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(2015)
New Phytol
, vol.206
, pp. 497-500
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Rey, T.1
Chatterjee, A.2
Buttay, M.3
Toulotte, J.4
Schornack, S.5
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8
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84871736503
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Natural diversity in the model legume Medicago truncatula allows identifying distinct genetic mechanisms conferring partial resistance to Verticillium wilt
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Ben, C., Toueni, M., Montanari, S., Tardin, M.C., Fervel, M., Negahi, A., Saint-Pierre, L., Mathieu, G., Gras, M.C., Noël, D., et al. Natural diversity in the model legume Medicago truncatula allows identifying distinct genetic mechanisms conferring partial resistance to Verticillium wilt. J Exp Bot 64 (2013), 317–332.
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J Exp Bot
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, pp. 317-332
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Ben, C.1
Toueni, M.2
Montanari, S.3
Tardin, M.C.4
Fervel, M.5
Negahi, A.6
Saint-Pierre, L.7
Mathieu, G.8
Gras, M.C.9
Noël, D.10
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9
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84895065881
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The symbiotic transcription factor MtEFD and cytokinins are positively acting in the Medicago truncatula and Ralstonia solanacearum pathogenic interaction
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Moreau, S., Fromentin, J., Vailleau, F., Vernié T., Huguet, S., Balzergue, S., Frugier, F., Gamas, P., Jardinaud, M.F., The symbiotic transcription factor MtEFD and cytokinins are positively acting in the Medicago truncatula and Ralstonia solanacearum pathogenic interaction. New Phytol 201 (2014), 1343–1357.
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New Phytol
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, pp. 1343-1357
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Moreau, S.1
Fromentin, J.2
Vailleau, F.3
Vernié, T.4
Huguet, S.5
Balzergue, S.6
Frugier, F.7
Gamas, P.8
Jardinaud, M.F.9
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10
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84920705583
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The receptor kinase CERK1 has dual functions in symbiosis and immunity signalling
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Zhang, X., Dong, W., Sun, J., Feng, F., Deng, Y., He, Z., Oldroyd, G.E., Wang, E., The receptor kinase CERK1 has dual functions in symbiosis and immunity signalling. Plant J 81 (2015), 258–267.
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(2015)
Plant J
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Zhang, X.1
Dong, W.2
Sun, J.3
Feng, F.4
Deng, Y.5
He, Z.6
Oldroyd, G.E.7
Wang, E.8
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11
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84959176060
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The LysM receptor-like kinase SlLYK 10 regulates the arbuscular mycorrhizal symbiosis in tomato
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Buendia, L., Wang, T., Girardin, A., Lefebvre, B., The LysM receptor-like kinase SlLYK 10 regulates the arbuscular mycorrhizal symbiosis in tomato. New Phytol 210 (2016), 184–195.
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(2016)
New Phytol
, vol.210
, pp. 184-195
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Buendia, L.1
Wang, T.2
Girardin, A.3
Lefebvre, B.4
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12
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84942279959
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Effect of lipo-chitooligosaccharide on early growth of C4 grass seedlings
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Tanaka, K., Cho, S.-H., Lee, H., Pham, A.Q., Batek, J.M., Cui, S., Qiu, J., Khan, S.M., Joshi, T., Zhang, Z.J., et al. Effect of lipo-chitooligosaccharide on early growth of C4 grass seedlings. J Exp Bot 66 (2015), 5727–5738.
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(2015)
J Exp Bot
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Tanaka, K.1
Cho, S.-H.2
Lee, H.3
Pham, A.Q.4
Batek, J.M.5
Cui, S.6
Qiu, J.7
Khan, S.M.8
Joshi, T.9
Zhang, Z.J.10
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13
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84884669957
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Nonlegumes respond to rhizobial Nod factors by suppressing the innate immune response
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The authors expand the role of Nod factors from plant reprograming for mutualism toward defence suppression.
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Liang, Y., Cao, Y., Tanaka, K., Thibivilliers, S., Wan, J., Choi, J., Kang, C., Qiu, J., Stacey, G., Nonlegumes respond to rhizobial Nod factors by suppressing the innate immune response. Science 341 (2013), 1384–1387 The authors expand the role of Nod factors from plant reprograming for mutualism toward defence suppression.
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(2013)
Science
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, pp. 1384-1387
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Liang, Y.1
Cao, Y.2
Tanaka, K.3
Thibivilliers, S.4
Wan, J.5
Choi, J.6
Kang, C.7
Qiu, J.8
Stacey, G.9
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14
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85016733111
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The rice LysM receptor-like kinase OsCERK1 is required for the perception of short-chain chitin oligomers in arbuscular mycorrhizal signaling
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This article show how OsCERK1 senses chitooligosaccharides of different polymerisation degree and mediates either immunity or mutualistic signalling.
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Carotenuto, G., Chabaud, M., Miyata, K., Capozzi, M., Takeda, N., Kaku, H., Shibuya, N., Nakagawa, T., Barker, D.G., Genre, A., The rice LysM receptor-like kinase OsCERK1 is required for the perception of short-chain chitin oligomers in arbuscular mycorrhizal signaling. New Phytol 214 (2017), 1440–1446 This article show how OsCERK1 senses chitooligosaccharides of different polymerisation degree and mediates either immunity or mutualistic signalling.
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(2017)
New Phytol
, vol.214
, pp. 1440-1446
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Carotenuto, G.1
Chabaud, M.2
Miyata, K.3
Capozzi, M.4
Takeda, N.5
Kaku, H.6
Shibuya, N.7
Nakagawa, T.8
Barker, D.G.9
Genre, A.10
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15
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84874201792
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Short-chain chitin oligomers from arbuscular mycorrhizal fungi trigger nuclear Ca2+ spiking in Medicago truncatula roots and their production is enhanced by strigolactone
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Genre, A., Chabaud, M., Balzergue, C., Puech-Pagès, V., Novero, M., Rey, T., Fournier, J., Rochange, S., Bécard, G., Bonfante, P., et al. Short-chain chitin oligomers from arbuscular mycorrhizal fungi trigger nuclear Ca2+ spiking in Medicago truncatula roots and their production is enhanced by strigolactone. New Phytol 198 (2013), 190–202.
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(2013)
New Phytol
, vol.198
, pp. 190-202
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Genre, A.1
Chabaud, M.2
Balzergue, C.3
Puech-Pagès, V.4
Novero, M.5
Rey, T.6
Fournier, J.7
Rochange, S.8
Bécard, G.9
Bonfante, P.10
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16
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84923927639
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Rhizobium–legume symbioses: the crucial role of plant immunity
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Gourion, B., Berrabah, F., Ratet, P., Stacey, G., Rhizobium–legume symbioses: the crucial role of plant immunity. Trends Plant Sci 20 (2015), 186–194.
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(2015)
Trends Plant Sci
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Gourion, B.1
Berrabah, F.2
Ratet, P.3
Stacey, G.4
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17
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85038393199
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NAD1 controls defense-like responses in Medicago truncatula symbiotic nitrogen fixing nodules following rhizobial colonization in a BacA-independent manner
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Domonkos, Á., Kovács, S., Gombár, A., Kiss, E., Horváth, B., Kováts, G.Z., Farkas, A., Tóth, M.T., Ayaydin, F., Bóka, K., et al. NAD1 controls defense-like responses in Medicago truncatula symbiotic nitrogen fixing nodules following rhizobial colonization in a BacA-independent manner. Genes 8 (2017), 387–408.
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(2017)
Genes
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, pp. 387-408
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Domonkos, Á.1
Kovács, S.2
Gombár, A.3
Kiss, E.4
Horváth, B.5
Kováts, G.Z.6
Farkas, A.7
Tóth, M.T.8
Ayaydin, F.9
Bóka, K.10
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18
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85038840841
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LYS12 LysM receptor decelerates Phytophthora palmivora disease progression in Lotus japonicus
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Fuechtbauer, W., Yunusov, T., Bozsóki, Z., Gavrin, A., James, E.K., Stougaard, J., Schornack, S., Radutoiu, S., LYS12 LysM receptor decelerates Phytophthora palmivora disease progression in Lotus japonicus. Plant J 93 (2017), 297–310.
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Plant J
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Fuechtbauer, W.1
Yunusov, T.2
Bozsóki, Z.3
Gavrin, A.4
James, E.K.5
Stougaard, J.6
Schornack, S.7
Radutoiu, S.8
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19
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84934960820
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Chitin-mediated plant–fungal interactions: catching, hiding and handshaking
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Shinya, T., Nakagawa, T., Kaku, H., Shibuya, N., Chitin-mediated plant–fungal interactions: catching, hiding and handshaking. Curr Opin Plant Biol 26 (2015), 64–71.
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Curr Opin Plant Biol
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Shinya, T.1
Nakagawa, T.2
Kaku, H.3
Shibuya, N.4
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20
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85018959421
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The role of plant innate immunity in the legume–rhizobium symbiosis
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Cao, Y., Halane, M.K., Gassmann, W., Stacey, G., The role of plant innate immunity in the legume–rhizobium symbiosis. Annu Rev Plant Biol 68 (2017), 535–561.
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Annu Rev Plant Biol
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Cao, Y.1
Halane, M.K.2
Gassmann, W.3
Stacey, G.4
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21
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85036577653
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OsCERK1 plays a crucial role in the lipopolysaccharide-induced immune response of rice
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Desaki, Y., Kouzai, Y., Ninomiya, Y., Iwase, R., Shimizu, Y., Seko, K., Molinaro, A., Minami, E., Shibuya, N., Kaku, H., Nishizawa, Y., OsCERK1 plays a crucial role in the lipopolysaccharide-induced immune response of rice. New Phytol 217 (2017), 1042–1049.
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New Phytol
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Desaki, Y.1
Kouzai, Y.2
Ninomiya, Y.3
Iwase, R.4
Shimizu, Y.5
Seko, K.6
Molinaro, A.7
Minami, E.8
Shibuya, N.9
Kaku, H.10
Nishizawa, Y.11
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22
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84911964533
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The bifunctional plant receptor, OsCERK1, regulates both chitin-triggered immunity and arbuscular mycorrhizal symbiosis in rice
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This article provides the first example of a single LysM-RLK contributing oppositely to pathogenic and mutualistic plant–microbe interactions.
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Miyata, K., Kozaki, T., Kouzai, Y., Ozawa, K., Ishii, K., Asamizu, E., Okabe, Y., Umehara, Y., Miyamoto, A., Kobae, Y., et al. The bifunctional plant receptor, OsCERK1, regulates both chitin-triggered immunity and arbuscular mycorrhizal symbiosis in rice. Plant Cell Physiol 55 (2014), 1864–1872 This article provides the first example of a single LysM-RLK contributing oppositely to pathogenic and mutualistic plant–microbe interactions.
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Plant Cell Physiol
, vol.55
, pp. 1864-1872
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Miyata, K.1
Kozaki, T.2
Kouzai, Y.3
Ozawa, K.4
Ishii, K.5
Asamizu, E.6
Okabe, Y.7
Umehara, Y.8
Miyamoto, A.9
Kobae, Y.10
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23
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85016102402
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Evaluation of the role of the LysM receptor-like kinase, OsNFR5/OsRLK2 for AM symbiosis in rice
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Miyata, K., Hayafune, M., Kobae, Y., Kaku, H., Nishizawa, Y., Masuda, Y., Shibuya, N., Nakagawa, T., Evaluation of the role of the LysM receptor-like kinase, OsNFR5/OsRLK2 for AM symbiosis in rice. Plant Cell Physiol 57 (2016), 2283–2290.
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Plant Cell Physiol
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Miyata, K.1
Hayafune, M.2
Kobae, Y.3
Kaku, H.4
Nishizawa, Y.5
Masuda, Y.6
Shibuya, N.7
Nakagawa, T.8
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24
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84861665941
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Chitin-induced dimerization activates a plant immune receptor
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Liu, T., Liu, Z., Song, C., Hu, Y., Han, Z., She, J., Fan, F., Wang, J., Jin, C., Chang, J., et al. Chitin-induced dimerization activates a plant immune receptor. Science 336 (2012), 1160–1164.
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Science
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Liu, T.1
Liu, Z.2
Song, C.3
Hu, Y.4
Han, Z.5
She, J.6
Fan, F.7
Wang, J.8
Jin, C.9
Chang, J.10
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25
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84892922883
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Chitin-induced activation of immune signaling by the rice receptor CEBiP relies on a unique sandwich-type dimerization
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Hayafune, M., Berisio, R., Marchetti, R., Silipo, A., Kayama, M., Desaki, Y., Arima, S., Squeglia, F., Ruggiero, A., Tokuyasu, K., et al. Chitin-induced activation of immune signaling by the rice receptor CEBiP relies on a unique sandwich-type dimerization. Proc Natl Acad Sci U S A 11 (2014), 404–413.
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Hayafune, M.1
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Kayama, M.5
Desaki, Y.6
Arima, S.7
Squeglia, F.8
Ruggiero, A.9
Tokuyasu, K.10
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26
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84904498196
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LIK1, a CERK1-interacting kinase, regulates plant immune responses in Arabidopsis
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Le, M.H., Cao, Y., Zhang, X.C., Stacey, G., LIK1, a CERK1-interacting kinase, regulates plant immune responses in Arabidopsis. PLoS One, 9, 2014, e102245.
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PLoS One
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Le, M.H.1
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27
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84903178917
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Selective regulation of the chitin-induced defense response by the Arabidopsis receptor-like cytoplasmic kinase PBL27
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Shinya, T., Yamaguchi, K., Desaki, Y., Yamada, K., Narisawa, T., et al. Selective regulation of the chitin-induced defense response by the Arabidopsis receptor-like cytoplasmic kinase PBL27. Plant J 79 (2017), 56–66.
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28
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The Arabidopsis CERK1-associated kinase PBL27 connects chitin perception to MAPK activation
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Yamada, K., Yamaguchi, K., Shirakawa, T., Nakagami, H., Mine, A., Ishikawa, K., Fujiwara, M., Narusaka, M., Narusaka, Y., Ichimura, K., et al. The Arabidopsis CERK1-associated kinase PBL27 connects chitin perception to MAPK activation. EMBO J 35 (2016), 2468–2483.
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Yamada, K.1
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29
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Chitin receptor CERK1 links salt stress and chitin-triggered innate immunity in Arabidopsis
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This suggests that a LysM-RLK receptor may together with ANNEXIN control salt stress responses in a way reminiscent of biotic stress responses.
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Espinoza, C., Liang, Y., Stacey, G., Chitin receptor CERK1 links salt stress and chitin-triggered innate immunity in Arabidopsis. Plant J 89 (2017), 984–995 This suggests that a LysM-RLK receptor may together with ANNEXIN control salt stress responses in a way reminiscent of biotic stress responses.
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Plant J
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Espinoza, C.1
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30
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The NFP locus of Medicago truncatula controls an early step of Nod factor signal transduction upstream of a rapid calcium flux and root hair deformation
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Ben Amor, B., Shaw, S.L., Oldroyd, G.E., Maillet, F., Penmetsa, R.V., Cook, D., Long, S.R., Denarie, J., Gough, C., The NFP locus of Medicago truncatula controls an early step of Nod factor signal transduction upstream of a rapid calcium flux and root hair deformation. Plant J 34 (2003), 495–506.
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Ben Amor, B.1
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31
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Transcriptional responses toward diffusible signals from symbiotic microbes reveal MtNFP- and MtDMI3-dependent reprogramming of host gene expression by arbuscular mycorrhizal fungal lipochitooligosaccharides
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Czaja, L.F., Hogekamp, C., Lamm, P., Maillet, F., Martinez, E.A., Samain, E., Dénarié J., Küster, H., Hohnjec, N., Transcriptional responses toward diffusible signals from symbiotic microbes reveal MtNFP- and MtDMI3-dependent reprogramming of host gene expression by arbuscular mycorrhizal fungal lipochitooligosaccharides. Plant Physiol 159 (2012), 1671–1685.
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Czaja, L.F.1
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32
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The LysM receptor-like kinase SlLYK10 regulates the arbuscular mycorrhizal symbiosis in tomato
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Buendia, L., Wang, T., Girardin, A., Lefebvre, B., The LysM receptor-like kinase SlLYK10 regulates the arbuscular mycorrhizal symbiosis in tomato. New Phytol 210 (2016), 184–195.
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New Phytol
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Buendia, L.1
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Gough, C., Jacquet, C., Nod factor perception protein carries weight in biotic interactions. Trends Plant Sci 18 (2013), 566–574.
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Nod factor receptors form heteromeric complexes and are essential for intracellular infection in Medicago nodules
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