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Chitosan–Selenium Nanoparticle (Cs–Se NP) Foliar Spray Alleviates Salt Stress in Bitter Melon

机译:壳聚糖 - 硒纳米粒子(CS-SE NP)叶面喷雾缓解苦瓜中的盐胁迫

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摘要

Salt stress severely reduces growth and yield of plants. Considering the positive effects of selenium (Se) and chitosan (Cs) separately against abiotic stress, in these experiments, we synthesized chitosan–selenium nanoparticles (Cs–Se NPs) and investigated their ability to reduce the negative effects of salt stress on growth and some biochemical parameters of bitter melon (Momordica charantia). Bitter melon plants were grown at three NaCl salinity levels (0, 50, and 100 mM) and a foliar spray of Cs–Se NPs (0, 10, and 20 mg L−1) was applied. Some key morphological, biochemical, and physiological parameters in leaf samples and essential oil from fruit were measured at harvest. Salinity decreased growth and yield while foliar application of Cs–Se NPs increased these critical parameters. Furthermore, Cs–Se NPs enhanced bitter melon tolerance to salinity by increasing antioxidant enzyme activity, proline concentration, relative water content, and K+, and decreasing MDA and H2O2 oxidants and Na aggregation in plant tissues. Yield was also improved, as the highest amount of essential oils was produced by plants treated with Cs–Se NPs. Generally, the greatest improvement in measured parameters under saline conditions was obtained by treating plants with 20 mg L−1 Cs–Se NPs, which significantly increased salinity tolerance in bitter melon plants.
机译:盐胁迫严重降低了植物的生长和产量。考虑到硒(SE)和壳聚糖(CS)分别对非生物胁迫的积极作用,在这些实验中,我们合成了壳聚糖硒纳米粒子(CS-SE NPS)并研究了它们降低盐胁迫对生长的负面影响的能力苦瓜的一些生化参数(Momordica Charantia)。在三种NaCl盐度水平(0,50和100mm)下生长苦瓜植物,涂抹CS-SE NPS(0,110和20mg L-1)的叶面喷雾。在收获时测量叶样品和果实精油中的一些关键形态学,生物化学和生理学参数。盐度降低了生长和产量,而CS-SE NPS的叶面施用增加了这些关键参数。此外,通过增加抗氧化酶活性,脯氨酸浓度,相对含水量和k +,降低MDA和H 2 O 2氧化剂和植物组织中的Na聚集,Cs-Se NPs增强苦瓜耐受性。产量也得到改善,因为用植物用CS-SE NPS处理的植物产生的最高量。通常,通过用20mg L-1 CS-SE NPS处理植物获得盐条件下测量参数的最大改善,从而显着增加了苦瓜植物中的盐度耐受性。

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