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硬粒小麦硫氧还蛋白 h 型 TdTrxh2 蛋白通过其保护作用和氧化还原稳态的调节赋予转化拟南芥植株的非生物胁迫耐受性。

The thioredoxin h-type TdTrxh2 protein of durum wheat confers abiotic stress tolerance of the transformant Arabidopsis plants through its protective role and the regulation of redox homoeostasis.

机构信息

Biotechnology and Plant Improvement Laboratory, Center of Biotechnology of Sfax (CBS), BP1177, 3018, Sfax, Tunisia.

出版信息

Protoplasma. 2024 Mar;261(2):317-331. doi: 10.1007/s00709-023-01899-7. Epub 2023 Oct 14.

Abstract

The thioredoxins (Trxs) are ubiquitous and they play a crucial role in various biological processes like growth and stress response. Although the functions of Trxs proteins are described in several previous reports, the function of the isoform Trxh2 of durum wheat (Triticum durum L.), designated as TdTrxh2, in abiotic stress response still unknown. Thus, we aimed in this study the functional characterization of TdTrxh2 through its expression in yeast cells and Arabidopsis plants. Sequence analysis revealed that TdTrxh2 protein shared the conserved redox site with the other Trxh from other plant species. Under various abiotic stresses, TdTrxh2 was up-regulated in leaves and roots of durum wheat. Interestingly, we demonstrated that TdTrxh2 exhibit protective effect on LDH activity against various treatments. Besides, the expression of TdTrxh2 in yeast cells conferred their tolerance to multiple stresses. Moreover, transgenic Arabidopsis expressing TdTrxh2 showed tolerance phenotype to several abiotic stresses. This tolerance was illustrated by high rate of proline accumulation, root proliferation, low accumulation of reactive oxygen species like HO and O, and high antioxidant CAT and POD enzymes activities. All these findings suggested that TdTrxh2 promotes abiotic stress tolerance through the redox homoeostasis regulation and its protective role.

摘要

硫氧还蛋白(Trxs)普遍存在,在生长和应激反应等各种生物过程中发挥着关键作用。尽管以前的报道已经描述了 Trxs 蛋白的功能,但硬粒小麦(Triticum durum L.)同工型 Trxh2(命名为 TdTrxh2)在非生物胁迫反应中的功能仍不清楚。因此,我们旨在通过在酵母细胞和拟南芥植物中表达来研究 TdTrxh2 的功能特征。序列分析表明,TdTrxh2 蛋白与其他植物物种的其他 Trxh 共享保守的氧化还原位点。在各种非生物胁迫下,TdTrxh2 在硬粒小麦的叶片和根部中上调表达。有趣的是,我们证明 TdTrxh2 对 LDH 活性具有保护作用,可抵抗各种处理。此外,在酵母细胞中表达 TdTrxh2 可使其对多种胁迫具有耐受性。此外,表达 TdTrxh2 的转基因拟南芥对几种非生物胁迫表现出耐受性表型。这种耐受性表现为脯氨酸积累率高、根系增殖、HO 和 O 等活性氧的积累低,以及 CAT 和 POD 等抗氧化酶活性高。所有这些发现表明,TdTrxh2 通过氧化还原同平衡调节及其保护作用促进非生物胁迫耐受性。

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