ZERO WORLD RESEARCHアミノ酸・有機酸の学術文献データベース

Nitric oxide regulates photosynthesis and the capacity of the antioxidant system under water deficit and rehydration in <i>Lolium multiflorum</i>/<i>Festuca arundinacea</i> introgression forms.

一酸化窒素は水欠乏および再灌水条件下のLolium multiflorum/Festuca arundinacea導入系統における光合成と抗酸化システムの能力を調節する (機械翻訳の邦題)

Frontiers in plant science2025Perlikowski D, Lechowicz K, Blicharz S, et al.
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研究デザイン
その他の原著論文
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未確定
出版年
2025
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doi.org
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有効な記録
状態確認日
2026/08/17
収集日
2026/08/03
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自動処理
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公開

日本語要約(機械生成)

本研究は、乾燥耐性が異なるLolium multiflorum/Festuca arundinacea導入系統を用い、一酸化窒素(NO)の含量を調節した条件下で、土壌水欠乏とその後の再灌水に対する植物応答における主要な生理学的特性とその関係を解明することを目的とした。NO捕捉剤PTIOを用いてNO含量を低下させた結果、水欠乏12日目(土壌含水率12%)に光合成能力が向上し、CO2同化量が増加した。これは気孔閉鎖の遅延と関連し、蒸散量の増加を招いた。また、NO含量の低下は水欠乏初期の水分吸収を有意に高め、乾燥耐性を損なう可能性が示された。さらに、NO捕捉はH2O2含量の上昇、水欠乏14日目(土壌含水率5%)および再灌水時のアスコルビン酸ペルオキシダーゼ活性の低下、脂質過酸化の増加を引き起こし、細胞の恒常性に影響を及ぼすことが示唆された。

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抄録

Although numerous studies have already indicated the important roles of nitric oxide (NO) in adaptations of different plant species, including forage grasses, to water deficit conditions, the precise mechanisms of its action have not been fully recognized. Thus, the purpose of this work was to identify the key physiological traits and understand their relations with plant response to soil water deficit and subsequent rewatering under modulated NO content in Lolium multiflorum/Festuca arundinacea introgression forms distinct in the levels of drought tolerance. To reduce NO content in plant cells, NO scavenger, 2-phenyl-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide (PTIO), was used. The obtained results clearly indicated a higher photosynthetic capacity of the plants with a decreased NO content on the 12th day of water deficit (12% of soil water content), which was manifested by a higher CO2 assimilation level. This phenomenon was associated with delayed stomata closure observed under these simulated conditions and resulted in a higher level of transpiration. Moreover, the plants with a lower NO content were characterized by a significantly higher water uptake in the early stages of water deficit progression, which could disturb their drought tolerance. Scavenging of NO also resulted in elevated H2O2 content, decreased activity of ascorbate peroxidase on the 14th day of water deficit (5% of soil water content) and subsequent rewatering, and a higher level of lipid peroxidation, which could impact cellular homeostasis of the analyzed introgression forms.

DOI 10.3389/fpls.2025.1652482

PMID 41019735

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