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  1. 原著論文

Diurnal regulation of SOS pathway and sodium excretion underlying salinity tolerance of Vigna marina

https://repo.qst.go.jp/records/2001140
https://repo.qst.go.jp/records/2001140
2efe9a93-5d42-4a34-bbc9-e66db61bf5d0
アイテムタイプ 学術雑誌論文 / Journal Article(1)
公開日 2025-01-14
タイトル
タイトル Diurnal regulation of SOS pathway and sodium excretion underlying salinity tolerance of Vigna marina
言語 en
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
著者 Noda Yusaku

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Noda Yusaku

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Fanmiao Wang

× Fanmiao Wang

Fanmiao Wang

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Sompong Chankaew

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Sompong Chankaew

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Hirotaka Ariga

× Hirotaka Ariga

Hirotaka Ariga

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Chiaki Muto

× Chiaki Muto

Chiaki Muto

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Yurie Iki

× Yurie Iki

Yurie Iki

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Haruko Ohashi

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Haruko Ohashi

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Yu Takahashi

× Yu Takahashi

Yu Takahashi

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Hiroaki Sakai

× Hiroaki Sakai

Hiroaki Sakai

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Kohtaro Iseki

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Kohtaro Iseki

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Eri Ogiso-Tanaka

× Eri Ogiso-Tanaka

Eri Ogiso-Tanaka

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Suzui Nobuo

× Suzui Nobuo

Suzui Nobuo

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Yonggen Yin

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Yonggen Yin

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Miyoshi Yuta

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Miyoshi Yuta

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Enomoto Kazuyuki

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Enomoto Kazuyuki

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Kawachi Naoki

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Kawachi Naoki

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Prakit Somta

× Prakit Somta

Prakit Somta

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Jun Furukawa

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Jun Furukawa

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Norihiko Tomooka

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Norihiko Tomooka

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Ken Naito

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Ken Naito

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抄録
内容記述タイプ Abstract
内容記述 Vigna marina (Barm.) Merr. is adapted to tropical marine beaches and has an outstanding tolerance to salt stress. Given there are growing demands for cultivating crops in saline soil or with saline water, it is important to understand how halophytic species are adapted to the saline environments. Here we revealed by positron emitting tracer imaging system (PETIS) that V. marina actively excretes sodium from the root during the light period but not in the dark period. The following whole genome sequencing accompanied with forward genetic study identified a QTL region harboring SOS1, encoding plasma membrane Na+/H+ antiporter, which was associated with not only salt tolerance but also ability of sodium excretion. We also found the QTL region contained a large structural rearrangement that suppressed recombination across ~20 Mbp, fixing multiple gene loci potentially involved in salt tolerance. RNA-seq and promoter analyses revealed SOS1 in V. marina was highly expressed even without salt stress and its promoter shared common cis-regulatory motifs with those exhibiting similar expression profile. Interestingly, the cis-regulatory motifs seemed installed by a transposable element (TE) insertion. Though not identified by genetic analysis, the transcriptome data also revealed SOS2 transcription was under diurnal regulation, explaining the pattern of sodium excretion together with up-regulated expression of SOS1. Furthermore, we demonstrated that, under a condition of mild salt stress, the plants with the diurnally regulated SOS pathway outperformed those with the constitutively activated one.
書誌情報 Plant, Cell & Environment

発行日 2025-01
出版者
出版者 Wiley
DOI
識別子タイプ DOI
関連識別子 10.1101/2024.03.26.586888
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Ver.1 2025-08-15 04:44:42.384123
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