Institute of Horticulture, Zhejiang Academy of Agricultural Sciences, Hangzhou 310021, China.
Henan Engineering Technology Research Center of Quality Regulation and Controlling of Horticultural Plants, College of Horticultural and Plant Protection, Henan University of Science and Technology, Luoyang 471023, China.
Int J Mol Sci. 2023 Nov 16;24(22):16388. doi: 10.3390/ijms242216388.
Drought stress profoundly affects plant growth and development, posing a significant challenge that is extensively researched in the field. Thioredoxins (TRXs), small proteins central to redox processes, are crucial to managing both abiotic and biotic stresses. In this research, the gene, cloned from wild Yanshan grapes, was validated as a functional TRX through enzyme activity assays. VyTRXy was found to bolster photosynthesis, augment levels of osmotic regulators, stimulate antioxidant enzyme activities, and strengthen drought resilience in transgenic plants. These enhancements were evidenced by higher survival rates, optimized photosynthetic metrics, increased proline levels, augmented chlorophyll concentration, reduced electrolyte leakage, and decreased malondialdehyde and hydrogen peroxide (HO) levels. Furthermore, there was a surge in the activities of enzymes such as catalase, ascorbate peroxidase, glutathione peroxidase, dehydroascorbate reductase, and glutathione reductase, along with an increased expression of TRX peroxidase. Notably, under drought stress, there was a marked elevation in the expression of stress-responsive genes, including the adversity stress-inducible expression gene () and DRE-binding protein (NtDREB), in transgenic tobacco. This investigation is pivotal in the quest for drought-resistant grapevine varieties and provides significant insights into the molecular functionality of in enhancing grapevine drought tolerance.
干旱胁迫深刻影响植物的生长和发育,是该领域广泛研究的重要挑战。硫氧还蛋白(TRXs)作为氧化还原过程中的关键小分子蛋白,对于应对非生物和生物胁迫至关重要。本研究从野生燕山葡萄中克隆得到一个基因,并通过酶活性测定验证其为功能性 TRX。VyTRXy 被发现可增强光合作用、增加渗透调节剂水平、刺激抗氧化酶活性,并提高转基因植物的抗旱能力。这些增强作用表现为更高的存活率、优化的光合指标、脯氨酸水平升高、叶绿素浓度增加、电解质渗漏减少以及丙二醛和过氧化氢(HO)水平降低。此外,过氧化氢酶、抗坏血酸过氧化物酶、谷胱甘肽过氧化物酶、脱氢抗坏血酸还原酶和谷胱甘肽还原酶等酶的活性增加,同时 TRX 过氧化物酶的表达也增加。值得注意的是,在干旱胁迫下,转基因烟草中逆境胁迫诱导表达基因()和 DRE 结合蛋白(NtDREB)等应激响应基因的表达显著上调。本研究对于抗旱性葡萄品种的选育具有重要意义,并深入揭示了在增强葡萄抗旱性中 基因的分子功能。