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  1. 原著論文

Genome-wide identification of genes associated with enhanced carbon secretion in cluster roots of Lupinus albus L.

https://repo.qst.go.jp/records/2001893
https://repo.qst.go.jp/records/2001893
1e6fab88-6ddd-402d-a5bb-8101096db0ef
アイテムタイプ 学術雑誌論文 / Journal Article(1)
公開日 2025-10-06
タイトル
タイトル Genome-wide identification of genes associated with enhanced carbon secretion in cluster roots of Lupinus albus L.
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 Kiyotoshi Hanashiro(佐賀大学)

× Kiyotoshi Hanashiro(佐賀大学)

Kiyotoshi Hanashiro(佐賀大学)

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Sho Nishida(佐賀大学)

× Sho Nishida(佐賀大学)

Sho Nishida(佐賀大学)

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Takuo Enomoto(佐賀大学)

× Takuo Enomoto(佐賀大学)

Takuo Enomoto(佐賀大学)

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Yonggen Yin

× Yonggen Yin

Yonggen Yin

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Suzui Nobuo

× Suzui Nobuo

Suzui Nobuo

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Miyoshi Yuta

× Miyoshi Yuta

Miyoshi Yuta

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Noda Yusaku

× Noda Yusaku

Noda Yusaku

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Enomoto Kazuyuki

× Enomoto Kazuyuki

Enomoto Kazuyuki

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Kawachi Naoki

× Kawachi Naoki

Kawachi Naoki

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Yusuke Unno(環科技研)

× Yusuke Unno(環科技研)

Yusuke Unno(環科技研)

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Hayato Maruyama(北海道大学)

× Hayato Maruyama(北海道大学)

Hayato Maruyama(北海道大学)

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Akiko Maruo(北海道大学)

× Akiko Maruo(北海道大学)

Akiko Maruo(北海道大学)

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Ayane Kan(北海道大学)

× Ayane Kan(北海道大学)

Ayane Kan(北海道大学)

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Takuro Shinano(北海道大学)

× Takuro Shinano(北海道大学)

Takuro Shinano(北海道大学)

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Jun Wasaki(広島大学)

× Jun Wasaki(広島大学)

Jun Wasaki(広島大学)

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抄録
内容記述タイプ Abstract
内容記述 Several plant species adapted to low-phosphorus (P) conditions develop cluster roots, specialized structures that release organic acids and acid phosphatases (APases) to increase inorganic phosphate (Pi) availability. White lupin (Lupinus albus L.) is used as a model for studying cluster root function. Using a positron-emitting tracer imaging system (PETIS), we previously observed spot-like carbon (C) secretion patterns in the cluster roots of white lupin, amounts of which differed widely among spots, suggesting variation in secretion activity among cluster roots. Here, we combined PETIS with RNA-Seq to investigate transcriptomic differences between cluster roots with varying secretion activities. We identified 564 genes positively correlated and 135 genes negatively correlated with secretion levels. Among the positively correlated genes, we found three aluminum-activated malate transporter genes and two multi-drug and toxic compound extrusion genes, likely involved respectively in malate and citrate secretion. Two APase genes encoding putative secreted enzymes were also upregulated. All Pi transporter genes except PHO1;6H were stably expressed, whereas PHO1;6H was significantly upregulated in high-C-secreting roots. Our findings highlight putative genes potentially involved in Pi mobilization, offering insights into plant adaptation to P deficiency.
書誌情報 Plant and Cell Physiology

発行日 2025-10
出版者
出版者 Oxford Journals
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Ver.1 2026-01-06 05:26:54.293161
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