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Current Opinion in Plant Biology|July 5, 2014
Root nodulation: a developmental program involving cell fate conversion triggered by symbiotic bacterial infectionTakuya Suzaki, Masayoshi Kawaguchi
Molecular Plant-Microbe Interactions : MPMI|December 28, 2019
CLE-HAR1 Systemic Signaling and NIN-Mediated Local Signaling Suppress the Increased Rhizobial Infection in the daphne Mutant of Lotus japonicusEmiko Yoro, Takuya Suzaki, Masayoshi Kawaguchi
Plant Signaling & Behavior|January 10, 2013
Induction of localized auxin response during spontaneous nodule development in Lotus japonicusTakuya Suzaki, Momoyo Ito, Masayoshi Kawaguchi
Frontiers in Plant Science|March 14, 2013
Genetic basis of cytokinin and auxin functions during root nodule developmentTakuya Suzaki, Momoyo Ito, Masayoshi Kawaguchi
International Review of Cell and Molecular Biology|March 26, 2015
Leguminous plants: inventors of root nodules to accommodate symbiotic bacteriaTakuya Suzaki, Emiko Yoro, Masayoshi Kawaguchi
Nature Communications|October 16, 2020
MIR2111-5 locus and shoot-accumulated mature miR2111 systemically enhance nodulation depending on HAR1 in Lotus japonicusNao Okuma, Takashi Soyano, Takuya Suzaki, et al.
Plant & Cell Physiology|August 9, 2013
CERBERUS and NSP1 of Lotus japonicus are common symbiosis genes that modulate arbuscular mycorrhiza developmentNaoya Takeda, Syusaku Tsuzuki, Takuya Suzaki, et al.
Plant Signaling & Behavior|February 27, 2020
Autoregulation of nodulation pathway is dispensable for nitrate-induced control of rhizobial infectionHanna Nishida, Momoyo Ito, Kenji Miura, et al.
Journal of Plant Research|June 14, 2016
Expression of the CLE-RS3 gene suppresses root nodulation in Lotus japonicusHanna Nishida, Yoshihiro Handa, Sachiko Tanaka, et al.
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