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Nano-ZnO-Induced Drought Tolerance Is Associated with Melatonin Synthesis and Metabolism in Maize

机译:纳米ZnO诱导的干旱耐受性与玉米褪黑激素合成和代谢相关。

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摘要

The applications of ZnO nanoparticles in agriculture have largely contributed to crop growth regulation, quality enhancement, and induction of stress tolerance, while the underlying mechanisms remain elusive. Herein, the involvement of melatonin synthesis and metabolism in the process of nano-ZnO induced drought tolerance was investigated in maize. Drought stress resulted in the changes of subcellular ultrastructure, the accumulation of malondialdehyde and osmolytes in leaf. The nano-ZnO (100 mg L ) application promoted the melatonin synthesis and activated the antioxidant enzyme system, which alleviated drought-induced damage to mitochondria and chloroplast. These changes were associated with upregulation of the relative transcript abundance of , , , , , , , and induced by nano-ZnO application. It was suggested that modifications in endogenous melatonin synthesis were involved in the nano-ZnO induced drought tolerance in maize.
机译:ZnO纳米颗粒在农业中的应用在很大程度上促进了作物生长的调节,质量的提高和胁迫耐受性的诱导,而其潜在机制仍然难以捉摸。在本文中,研究了玉米中褪黑激素合成和代谢参与纳米氧化锌诱导的抗旱性的过程。干旱胁迫导致叶片亚细胞超微结构的变化,丙二醛和渗透液的积累。纳米氧化锌(100 mg L)的应用促进了褪黑激素的合成并激活了抗氧化酶系统,从而减轻了干旱引起的线粒体和叶绿体损伤。这些变化与,,,,,,的相对转录本丰度的上调相关,并由纳米ZnO的应用诱导。提示内源性褪黑激素合成的修饰参与了纳米ZnO诱导的玉米的耐旱性。

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