Serveur d'exploration sur la mycorhize - Curation (Accueil)

Index « Auteurs » - entrée « Naoya Takeda »
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List of bibliographic references

Number of relevant bibliographic references: 14.
Ident.Authors (with country if any)Title
000618 (2019) Takuya Suzaki [Japon] ; Naoya Takeda [Japon] ; Hanna Nishida [Japon] ; Motomi Hoshino [Japon] ; Momoyo Ito [Japon] ; Fumika Misawa [Japon] ; Yoshihiro Handa [Japon] ; Kenji Miura [Japon] ; Masayoshi Kawaguchi [Japon]LACK OF SYMBIONT ACCOMMODATION controls intracellular symbiont accommodation in root nodule and arbuscular mycorrhizal symbiosis in Lotus japonicus.
000D22 (2017) Gennaro Carotenuto [Italie] ; Mireille Chabaud [France] ; Kana Miyata [Japon] ; Martina Capozzi [Italie] ; Naoya Takeda [Japon] ; Hanae Kaku [Japon] ; Naoto Shibuya [Japon] ; Tomomi Nakagawa [Japon] ; David G. Barker [France] ; Andrea Genre [Italie]The rice LysM receptor-like kinase OsCERK1 is required for the perception of short-chain chitin oligomers in arbuscular mycorrhizal signaling.
000E28 (2016) Miwa Nagae [Japon] ; Martin Parniske [Allemagne] ; Masayoshi Kawaguchi [Japon] ; Naoya Takeda [Japon]The relationship between thiamine and two symbioses: Root nodule symbiosis and arbuscular mycorrhiza.
000F09 (2016) Miwa Nagae [Allemagne] ; Martin Parniske [Allemagne] ; Masayoshi Kawaguchi [Allemagne] ; Naoya Takeda [Japon]The Thiamine Biosynthesis Gene THI1 Promotes Nodule Growth and Seed Maturation.
001214 (2016) Syusaku Tsuzuki [Japon] ; Yoshihiro Handa ; Naoya Takeda [Japon] ; Masayoshi Kawaguchi [Japon]Strigolactone-Induced Putative Secreted Protein 1 Is Required for the Establishment of Symbiosis by the Arbuscular Mycorrhizal Fungus Rhizophagus irregularis.
001441 (2015) Naoya Takeda [Japon] ; Yoshihiro Handa ; Syusaku Tsuzuki ; Mikiko Kojima ; Hitoshi Sakakibara ; Masayoshi KawaguchiGibberellin regulates infection and colonization of host roots by arbuscular mycorrhizal fungi.
001445 (2015) Yoshihiro Handa [Japon] ; Hiroyo Nishide [Japon] ; Naoya Takeda [Japon] ; Yutaka Suzuki [Japon] ; Masayoshi Kawaguchi [Japon] ; Katsuharu Saito [Japon]RNA-seq Transcriptional Profiling of an Arbuscular Mycorrhiza Provides Insights into Regulated and Coordinated Gene Expression in Lotus japonicus and Rhizophagus irregularis.
001612 (2015) Naoya Takeda [Japon] ; Yoshihiro Handa ; Syusaku Tsuzuki ; Mikiko Kojima ; Hitoshi Sakakibara ; Masayoshi KawaguchiGibberellins interfere with symbiosis signaling and gene expression and alter colonization by arbuscular mycorrhizal fungi in Lotus japonicus.
001906 (2014) Miwa Nagae [Japon] ; Naoya Takeda [Japon] ; Masayoshi Kawaguchi [Japon]Common symbiosis genes CERBERUS and NSP1 provide additional insight into the establishment of arbuscular mycorrhizal and root nodule symbioses in Lotus japonicus.
001B32 (2013) Naoya Takeda [Japon] ; Syusaku Tsuzuki ; Takuya Suzaki ; Martin Parniske ; Masayoshi KawaguchiCERBERUS and NSP1 of Lotus japonicus are common symbiosis genes that modulate arbuscular mycorrhiza development.
002069 (2012) Naoya Takeda [Japon] ; Takaki Maekawa ; Makoto HayashiNuclear-localized and deregulated calcium- and calmodulin-dependent protein kinase activates rhizobial and mycorrhizal responses in Lotus japonicus.
002425 (2011) Naoya Takeda [Allemagne] ; Kristina Haage ; Shusei Sato ; Satoshi Tabata ; Martin ParniskeActivation of a Lotus japonicus subtilase gene during arbuscular mycorrhiza is dependent on the common symbiosis genes and two cis-active promoter regions.
002584 (2010) Martin Groth [Allemagne] ; Naoya Takeda ; Jillian Perry ; Hisaki Uchida ; Stephan Dr Xl ; Andreas Brachmann ; Shusei Sato ; Satoshi Tabata ; Masayoshi Kawaguchi ; Trevor L. Wang ; Martin ParniskeNENA, a Lotus japonicus homolog of Sec13, is required for rhizodermal infection by arbuscular mycorrhiza fungi and rhizobia but dispensable for cortical endosymbiotic development.
002A45 (2009) Naoya Takeda [Allemagne] ; Shusei Sato ; Erika Asamizu ; Satoshi Tabata ; Martin ParniskeApoplastic plant subtilases support arbuscular mycorrhiza development in Lotus japonicus.

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