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外源乙酸对抗氧化防御和 PSII 组分的调节减轻了甜高粱的盐胁迫。

Modulation of antioxidant defense and PSII components by exogenously applied acetate mitigates salinity stress in Avena sativa.

机构信息

Department of Biology, College of Science, United Arab Emirates University, P.O.Box 15551, Al Ain, UAE.

Department of Chemistry, College of Science, United Arab Emirates University, P.O.Box 15551, Al Ain, UAE.

出版信息

Sci Rep. 2024 Jan 5;14(1):620. doi: 10.1038/s41598-024-51302-5.

Abstract

Salinity stress has detrimental effects on various aspects of plant development. However, our understanding of strategies to mitigate these effects in crop plants remains limited. Recent research has shed light on the potential of sodium acetate as a mitigating component against salinity stress in several plant species. Here, we show the role of acetate sodium in counteracting the adverse effects on oat (Avena sativa) plants subjected to NaCl-induced salinity stress, including its impact on plant morphology, photosynthetic parameters, and gene expression related to photosynthesis and antioxidant capacity, ultimately leading to osmoprotection. The five-week experiment involved subjecting oat plants to four different conditions: water, salt (NaCl), sodium acetate, and a combination of salt and sodium acetate. The presence of NaCl significantly inhibited plant growth and root elongation, disrupted chlorophylls and carotenoids content, impaired chlorophyll fluorescence, and down-regulated genes associated with the plant antioxidant defense system. Furthermore, our findings reveal that when stressed plants were treated with sodium acetate, it partially reversed these adverse effects across all analyzed parameters. This reversal was particularly evident in the increased content of proline, thereby ensuring osmoprotection for oat plants, even under stressful conditions. These results provide compelling evidence regarding the positive impact of sodium acetate on various plant development parameters, with a particular focus on the enhancement of photosynthetic activity.

摘要

盐胁迫对植物发育的各个方面都有不利影响。然而,我们对减轻作物中这些影响的策略的理解仍然有限。最近的研究揭示了醋酸钠作为减轻几种植物物种盐胁迫的缓解成分的潜力。在这里,我们展示了醋酸钠在对抗燕麦(Avena sativa)植物受到 NaCl 诱导的盐胁迫的不利影响中的作用,包括其对植物形态、光合作用参数以及与光合作用和抗氧化能力相关的基因表达的影响,最终导致渗透保护。为期五周的实验涉及将燕麦植物置于四种不同的条件下:水、盐(NaCl)、醋酸钠以及盐和醋酸钠的组合。NaCl 的存在显著抑制了植物的生长和根的伸长,破坏了叶绿素和类胡萝卜素的含量,损害了叶绿素荧光,并下调了与植物抗氧化防御系统相关的基因。此外,我们的研究结果表明,当应激植物用醋酸钠处理时,它在所有分析参数中部分逆转了这些不利影响。这种逆转在脯氨酸含量的增加中尤为明显,从而确保了燕麦植物的渗透保护,即使在胁迫条件下也是如此。这些结果提供了关于醋酸钠对各种植物发育参数的积极影响的有力证据,特别关注光合作用活性的增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f80/10770181/4ce1823ae536/41598_2024_51302_Fig1_HTML.jpg

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