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SpUSP, an annexin-interacting universal stress protein, enhances drought tolerance in tomato

机译:SpUSP是一种与膜联蛋白相互作用的通用胁迫蛋白,可增强番茄的耐旱性

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Universal stress protein (USP) appears to play an active role in the abiotic stress response, but their functions remain largely unknown in plants. A USP gene (SpUSP) was cloned from wild tomato (Solanum pennellii) and functionally characterized in cultivated tomato in the present study. The SpUSP transcript is abundantly accumulated in leaf stomata and its expression varied with the circadian rhythm. SpUSP was remarkably induced by dehydration, salt stress, oxidative stress, and the phytohormone abscisic acid (ABA) etc. This protein was predominantly localized in the nucleus and cell membrane. Overexpressing SpUSP increased drought tolerance of tomato in the seedling and adult stages. Under drought stress, the ABA content significantly increased in the SpUSP-overexpressing plants, which induced stomatal closure and reduced water loss, leading to the enhancement of drought tolerance. Based on the microarray data, a large number of chlorophyll a/b-binding proteins and photosystem-related genes were up-regulated in the SpUSP-overexpressing plants under drought conditions, which possibly enhanced the stomatal sensivitity to ABA and maintained the photosynthetic function. SpUSP overexpression also alleviated the oxidative damage accompanied by oxidative stress-responsive gene activation and osmolyte accumulation. Annexin (SGN-U314161) was found to interacte with SpUSP in the yeast two-hybrid method. This interaction was further confirmed by the bimolecular fluorescence complementation assay. The present study demonstrated that the annexin-interacting SpUSP plays important roles in the drought tolerance of tomato by influencing ABA-induced stomatal movement, increasing photosynthesis, and alleviating oxidative stress.
机译:通用胁迫蛋白(USP)在非生物胁迫响应中似乎起着积极作用,但其功能在植物中仍然未知。本研究从野生番茄(Solanum pennellii)中克隆了USP基因(SpUSP),并在栽培番茄中对其功能进行了表征。 SpUSP转录物在叶片气孔中大量积累,其表达随昼夜节律而变化。 SpUSP明显受脱水,盐胁迫,氧化胁迫和植物激素脱落酸(ABA)等诱导。该蛋白主要位于细胞核和细胞膜中。 SpUSP的过表达提高了番茄幼苗和成年期的耐旱性。在干旱胁迫下,过表达SpUSP的植物中ABA含量显着增加,这导致气孔关闭并减少了水分流失,从而增强了干旱耐受性。基于微阵列数据,干旱条件下,过表达SpUSP的植物中大量的叶绿素a / b结合蛋白和光系统相关基因被上调,这可能增强了气孔对ABA的敏感性并维持了光合功能。 SpUSP的过表达还减轻了伴随氧化应激反应的基因激活和渗透液积聚的氧化损伤。发现膜联蛋白(SGN-U314161)在酵母两杂交法中与SpUSP相互作用。通过双分子荧光互补测定进一步证实了这种相互作用。本研究表明,与膜联蛋白相互作用的SpUSP通过影响ABA诱导的气孔运动,增加光合作用和减轻氧化应激,在番茄的耐旱性中发挥重要作用。

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