Scavenging of nitric oxide up-regulates photosynthesis under drought in Festuca arundinacea and F. glaucescens but reduces their drought tolerance.
一酸化窒素の除去はFestuca arundinaceaとF. glaucescensの乾燥下での光合成を上方制御するが、それらの乾燥耐性を低下させる (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
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- 出版年
- 2022
- 出典
- doi.org
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- 表示あり
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- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/03
- 鮮度
- 確認期限内
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- 自動処理
- 記録状態
- 公開
日本語要約(機械生成)
一酸化窒素(NO)は植物の多くの生理過程に関与するが、乾燥応答における役割は完全には解明されていない。本研究では、乾燥耐性の異なる2遺伝子型を選抜したFestuca arundinaceaとF. glaucescensを用い、NOスカベンジャー(PTIO)を処理して人為的な水不足と再灌水に対する生理反応を比較した。その結果、乾燥下で生成されるNOは主に葉肉細胞に局在し、NOを除去すると光合成能力が向上し、気孔閉鎖が遅延した。一方で、膜透過性の増大と活性酸素種の蓄積が観察され、NOレベルの低下は乾燥耐性とストレス後の回復能を低下させることが示唆された。
この要約は公開抄録のみを根拠にAIが機械的に生成したものです。正確な内容は原文を確認してください。
抄録
Nitric oxide (NO) has been proven to be involved in the regulation of many physiological processes in plants. Though the contribution of NO in plant response to drought has been demonstrated in numerous studies, this phenomenon remains still not fully recognized. The research presented here was performed to decipher the role of NO metabolism in drought tolerance and the ability to recover after stress cessation in two closely related species of forage grasses, important for agriculture in European temperate regions: Festuca arundinacea and F. glaucescens. In both species, two genotypes with distinct levels of drought tolerance were selected to compare their physiological reactions to simulated water deficit and further re-watering, combined with a simultaneous application of NO scavenger, 2-phenyl-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide (PTIO). The results clearly indicated a strong relationship between scavenging of NO in leaves and physiological response of both analyzed grass species to water deficit and re-watering. It was revealed that NO generated under drought was mainly located in mesophyll cells. In plants with reduced NO level a higher photosynthetic capacity and delay in stomatal closure under drought, were observed. Moreover, NO scavenging resulted also in the increased membrane permeability and higher accumulation of ROS in cells of analyzed plants both under drought and re-watering. This phenomena indicate that lower NO level might reduce drought tolerance and the ability of F. arundinacea and F. glaucescens to recover after stress cessation.
MeSH
DOI 10.1038/s41598-022-10299-5
PMID 35444199
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