Tomomi Nakagawa
Tomomi Nakagawa
Nagoya Univ. / NIBB
Verified email at nibb.ac.jp
TitleCited byYear
Deregulation of a Ca2+/calmodulin-dependent kinase leads to spontaneous nodule development
L Tirichine, H Imaizumi-Anraku, S Yoshida, Y Murakami, LH Madsen, ...
Nature 441 (7097), 1153, 2006
4022006
How many peas in a pod? Legume genes responsible for mutualistic symbioses underground
H Kouchi, H Imaizumi-Anraku, M Hayashi, T Hakoyama, T Nakagawa, ...
Plant and Cell Physiology 51 (9), 1381-1397, 2010
2172010
From defense to symbiosis: limited alterations in the kinase domain of LysM receptor‐like kinases are crucial for evolution of legume–Rhizobium symbiosis
T Nakagawa, H Kaku, Y Shimoda, A Sugiyama, M Shimamura, ...
The Plant Journal 65 (2), 169-180, 2011
1292011
Shoot-applied MeJA suppresses root nodulation in Lotus japonicus
T Nakagawa, M Kawaguchi
Plant and Cell Physiology 47 (1), 176-180, 2006
1142006
The bifunctional plant receptor, OsCERK1, regulates both chitin-triggered immunity and arbuscular mycorrhizal symbiosis in rice
K Miyata, T Kozaki, Y Kouzai, K Ozawa, K Ishii, E Asamizu, Y Okabe, ...
Plant and Cell Physiology 55 (11), 1864-1872, 2014
1042014
The Clavata2 genes of pea and Lotus japonicus affect autoregulation of nodulation
L Krusell, N Sato, I Fukuhara, BEV Koch, C Grossmann, S Okamoto, ...
The Plant Journal 65 (6), 861-871, 2011
952011
Chitin-mediated plant–fungal interactions: catching, hiding and handshaking
T Shinya, T Nakagawa, H Kaku, N Shibuya
Current opinion in plant biology 26, 64-71, 2015
592015
Two Distinct EIN2 Genes Cooperatively Regulate Ethylene Signaling in Lotus japonicus.
K Miyata, M Kawaguchi, T Nakagawa
Plant and cell physiology 54 (9), 1469-1477, 2013
432013
The rice LysM receptor‐like kinase OsCERK1 is required for the perception of short‐chain chitin oligomers in arbuscular mycorrhizal signaling
G Carotenuto, M Chabaud, K Miyata, M Capozzi, N Takeda, H Kaku, ...
New Phytologist 214 (4), 1440-1446, 2017
312017
Characterization and expression analysis of genes encoding phosphoenolpyruvate carboxylase and phosphoenolpyruvate carboxylase kinase of Lotus japonicus, a model legume
T Nakagawa, T Izumi, M Banba, Y Umehara, H Kouchi, K Izui, S Hata
Molecular plant-microbe interactions 16 (4), 281-288, 2003
292003
Regulatory regions and nuclear factors involved in nodule-enhanced expression of a soybean phosphoenolpyruvate carboxylase gene: implications for molecular evolution
T Nakagawa, K Takane, T Sugimoto, K Izui, H Kouchi, S Hata
Molecular genetics and genomics 269 (2), 163-172, 2003
192003
Evaluation of the role of the LysM receptor-like kinase, OsNFR5/OsRLK2 for AM symbiosis in rice
K Miyata, M Hayafune, Y Kobae, H Kaku, Y Nishizawa, Y Masuda, ...
Plant and Cell Physiology 57 (11), 2283-2290, 2016
162016
Expression and Functional Analysis of a CLV3-Like Gene in the Model Legume Lotus japonicus
S Okamoto, T Nakagawa, M Kawaguchi
Plant and cell physiology 52 (7), 1211-1221, 2011
92011
Rice arbuscular mycorrhiza as a tool to study the molecular mechanisms of fungal symbiosis and a potential target to increase productivity
T Nakagawa, H Imaizumi-Anraku
Rice 8 (1), 32, 2015
62015
A novel pathosystem to study the interactions between Lotus japonicus and Fusarium solani
K Takeuchi, K Tomioka, H Kouchi, T Nakagawa, H Kaku
Journal of general plant pathology 73 (5), 336-341, 2007
32007
Genes involved in pathogenesis and defense responses
T Nakagawa, S Okazaki, N Shibuya
The Lotus japonicus Genome, 163-169, 2014
22014
Discriminative phytoalexin accumulation in Lotus japonicus against symbiotic and non-symbiotic microorganisms and related chemical signals
M Masai, M Arakawa, K Iwaya, T Aoki, T Nakagawa, S Ayabe, ...
Bioscience, biotechnology, and biochemistry, 130209, 2013
22013
The Lotus intrinsic ethylene receptor regulates both symbiotic and non-symbiotic responses
K Miyata, T Nakagawa
Plant Biotechnology, 16.0215 a, 2016
12016
Patterns in Plant Development Patterns in Plant Development, 1989
S Okamoto, T Nakagawa, M Kawaguchi
Plant and cell physiology 52 (7), 1211-1221, 2011
2011
Plant Microtechnique and Microscopy Plant Microtechnique and Microscopy, 129-130, 1999
S Okamoto, T Nakagawa, M Kawaguchi
Plant and cell physiology 52 (7), 1211-1221, 2011
2011
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Articles 1–20