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ABA 信号转导而非代谢参与了海藻糖诱导的番茄植株的耐旱性。

ABA signaling rather than ABA metabolism is involved in trehalose-induced drought tolerance in tomato plants.

机构信息

College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, 100083, China.

School of Agricultural Economics and Rural Development, Renmin University of China, Beijing, 100872, China.

出版信息

Planta. 2019 Aug;250(2):643-655. doi: 10.1007/s00425-019-03195-2. Epub 2019 May 29.

Abstract

Trehalose increased drought tolerance of tomato plants, accompanied by reduced water loss and closed stomata, which was associated with the upregulated ABA signaling-related genes expression, but not in ABA accumulation. Drought is one of the principal abiotic stresses that negatively influence the growth of plant and yield. Trehalose has great agronomic potential to improve the stress tolerance of plants. However, little information is available on the role of ABA and its signaling components in trehalose-induced drought tolerance. The aim of this study is to elucidate the potential mechanism by which trehalose regulates ABA in response to drought stress. In this study, 6-week-old tomato (Solanum lycopersicum cv. Ailsa Craig) plants were treated with 0 or 15.0 mM trehalose solution. Results showed that trehalose treatment significantly enhanced drought tolerance of tomato plants, accompanied by encouraged stomatal closure and protected chloroplast ultrastructure. Compared with controls, trehalose-treated plants showed lower hydrogen peroxide content and higher antioxidant enzymes activities, which contributed to alleviate oxidative damage caused by drought. Moreover, trehalose treatment decreased ABA content, which was followed by the downregulation of ABA biosynthesis genes expression and the upregulation of ABA catabolism genes expression. In contrast, exogenous trehalose upregulated transcript levels of ABA signaling-related genes, including SlPYL1/3/4/5/6/7/9, SlSnRK2.3/4, SlAREB1/2, and SlDREB1. These results suggested that trehalose treatment enhanced drought tolerance of tomato plants, and it's ABA signaling rather than ABA metabolism that was involved in trehalose-induced drought tolerance in tomato plants. These findings provide evidence for the physiological role of trehalose and bring about a new understanding of the possible relationship between trehalose and ABA.

摘要

海藻糖提高了番茄植株的耐旱性,伴随的是水分流失减少和气孔关闭,这与 ABA 信号相关基因表达上调有关,但与 ABA 积累无关。干旱是影响植物生长和产量的主要非生物胁迫之一。海藻糖具有极大的农业潜力,可以提高植物的抗胁迫能力。然而,关于 ABA 及其信号成分在海藻糖诱导的耐旱性中的作用的信息很少。本研究旨在阐明海藻糖调节 ABA 以响应干旱胁迫的潜在机制。在本研究中,用 0 或 15.0 mM 海藻糖溶液处理 6 周龄番茄(Solanum lycopersicum cv. Ailsa Craig)植株。结果表明,海藻糖处理显著增强了番茄植株的耐旱性,伴随着促进的气孔关闭和保护的叶绿体超微结构。与对照相比,海藻糖处理的植株表现出较低的过氧化氢含量和较高的抗氧化酶活性,有助于缓解干旱引起的氧化损伤。此外,海藻糖处理降低了 ABA 含量,随后 ABA 生物合成基因表达下调和 ABA 分解代谢基因表达上调。相比之下,外源海藻糖上调了 ABA 信号相关基因的转录水平,包括 SlPYL1/3/4/5/6/7/9、SlSnRK2.3/4、SlAREB1/2 和 SlDREB1。这些结果表明,海藻糖处理增强了番茄植株的耐旱性,而 ABA 信号而不是 ABA 代谢参与了番茄植株中海藻糖诱导的耐旱性。这些发现为海藻糖的生理作用提供了证据,并对海藻糖和 ABA 之间可能的关系有了新的认识。

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