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壳聚糖基水杨酸纳米复合材料(CS-SA NCs)在盐胁迫下对葡萄(Vitis vinifera cv. 'Sultana')的保护作用。

Protective effects of chitosan based salicylic acid nanocomposite (CS-SA NCs) in grape (Vitis vinifera cv. 'Sultana') under salinity stress.

机构信息

Department of Horticulture, Faculty of Agriculture, University of Maragheh, Maragheh, Iran.

出版信息

Sci Rep. 2023 Jan 17;13(1):883. doi: 10.1038/s41598-023-27618-z.

Abstract

Salinity is one of the most important abiotic stresses that reduce plant growth and performance by changing physiological and biochemical processes. In addition to improving the crop, using nanomaterials in agriculture can reduce the harmful effects of environmental stresses, particularly salinity. A factorial experiment was conducted in the form of a completely randomized design with two factors including salt stress at three levels (0, 50, and 100 mM NaCl) and chitosan-salicylic acid nanocomposite at three levels (0, 0.1, and 0.5 mM). The results showed reductions in chlorophylls (a, b, and total), carotenoids, and nutrient elements (excluding sodium) while proline, hydrogen peroxide, malondialdehyde, total soluble protein, soluble carbohydrate, total antioxidant, and antioxidant enzymes activity increased with treatment chitosan-salicylic acid nanocomposite (CS-SA NCs) under different level NaCl. Salinity stress reduced Fm', Fm, and Fv/Fm by damage to photosynthetic systems, but treatment with CS-SA NCs improved these indices during salinity stress. In stress-free conditions, applying the CS-SA NCs improved the grapes' physiological, biochemical, and nutrient elemental balance traits. CS-SA NCs at 0.5 mM had a better effect on the studied traits of grapes under salinity stress. The CS-SA nanoparticle is a biostimulant that can be effectively used to improve the grape plant yield under salinity stress.

摘要

盐度是通过改变生理和生化过程来降低植物生长和性能的最重要的非生物胁迫因素之一。除了改善作物外,在农业中使用纳米材料还可以减少环境胁迫,特别是盐度的有害影响。本研究采用完全随机设计的因子试验,包括两个因素:盐胁迫水平(0、50 和 100mM NaCl)和壳聚糖-水杨酸纳米复合物水平(0、0.1 和 0.5mM)。结果表明,叶绿素(a、b 和总量)、类胡萝卜素和营养元素(不包括钠)减少,而脯氨酸、过氧化氢、丙二醛、总可溶性蛋白、可溶性碳水化合物、总抗氧化剂和抗氧化酶活性随着壳聚糖-水杨酸纳米复合物(CS-SA NCs)处理而增加,在不同 NaCl 水平下。盐胁迫通过破坏光合作用系统降低了 Fm'、Fm 和 Fv/Fm,但 CS-SA NCs 处理在盐胁迫下改善了这些指标。在无胁迫条件下,CS-SA NCs 处理改善了葡萄的生理、生化和营养元素平衡特性。在盐胁迫下,0.5mM 的 CS-SA NCs 对葡萄的研究特性具有更好的效果。CS-SA 纳米颗粒是一种生物刺激素,可有效用于提高盐胁迫下葡萄的产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81de/9845209/8fcf35cfe6f4/41598_2023_27618_Fig1_HTML.jpg

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