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Naoya Takeda
Researcher at Kwansei Gakuin University
Publications - 32
Citations - 2217
Naoya Takeda is an academic researcher from Kwansei Gakuin University. The author has contributed to research in topics: Lotus japonicus & Rhizophagus irregularis. The author has an hindex of 19, co-authored 30 publications receiving 1925 citations. Previous affiliations of Naoya Takeda include Graduate University for Advanced Studies & National Institute for Basic Biology, Japan.
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Journal ArticleDOI
Plastid proteins crucial for symbiotic fungal and bacterial entry into plant roots
Haruko Imaizumi-Anraku,Naoya Takeda,Myriam Charpentier,Myriam Charpentier,Jillian Perry,Hiroki Miwa,Yosuke Umehara,Hiroshi Kouchi,Yasuhiro Murakami,Lonneke Mulder,Kate Vickers,Jodie Pike,J. Allan Downie,Trevor L. Wang,Shusei Sato,Erika Asamizu,Satoshi Tabata,Makoto Yoshikawa,Yoshikatsu Murooka,Guojiang Wu,Masayoshi Kawaguchi,Shinji Kawasaki,Martin Parniske,Martin Parniske,Makoto Hayashi +24 more
TL;DR: Surprisingly, both twin proteins from Lotus japonicus are localized in the plastids of root cells, indicating a previously unrecognized role of this ancient endosymbiont in controlling intracellular symbioses that evolved more recently.
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Lotus japonicus CASTOR and POLLUX Are Ion Channels Essential for Perinuclear Calcium Spiking in Legume Root Endosymbiosis
Myriam Charpentier,Rolf Bredemeier,Gerhard Wanner,Naoya Takeda,Enrico Schleiff,Martin Parniske +5 more
TL;DR: It is shown that CASTOR and POLLUX form two independent homocomplexes in planta and could either trigger the opening of calcium release channels or compensate the charge release during the calcium efflux as counter ion channels.
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NENA , a Lotus japonicus Homolog of Sec13 , Is Required for Rhizodermal Infection by Arbuscular Mycorrhiza Fungi and Rhizobia but Dispensable for Cortical Endosymbiotic Development
Martin Groth,Naoya Takeda,Jillian Perry,Hisaki Uchida,Stephan Dräxl,Andreas Brachmann,Shusei Sato,Satoshi Tabata,Masayoshi Kawaguchi,Trevor L. Wang,Martin Parniske +10 more
TL;DR: Detailed phenotypic analyses of nena mutants revealed a rhizobial infection mode that overcame the lack of rhizodermal responsiveness and carried the hallmarks of crack entry, including a requirement for ethylene, which support the concept of tissue-specific components for the activation of CCaMK.
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Gibberellin controls the nodulation signaling pathway in Lotus japonicus
Takaki Maekawa,Makoto Maekawa-Yoshikawa,Naoya Takeda,Haruko Imaizumi-Anraku,Yoshikatsu Murooka,Makoto Hayashi +5 more
TL;DR: It is concluded that GA inhibits the nodulation signaling pathway downstream of cytokinin, possibly at NSP2, which is required for Nod factor-dependent NIN expression.
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Apoplastic plant subtilases support arbuscular mycorrhiza development in Lotus japonicus
TL;DR: It is shown that two apoplastic plant proteases of the subtilase family are required for AM development and a role for these subtilases during the fungal infection process in particular arbuscule development is indicated.