Zhengzhou Fruit Research Institute of the Chinese Academy of Agricultural Sciences, Zhengzhou 450000, China.
Int J Mol Sci. 2021 Dec 28;23(1):276. doi: 10.3390/ijms23010276.
With the increase in watermelon cultivation area, there is an urgent need to explore enzymatic and genetic resources for the sustainable development of watermelon, especially under salt stress. Among the various compounds known, trehalose plays an important role in regulating abiotic stress tolerances in diverse organisms, including plants. Therefore, the present study comprehensively analyzed the trehalose-6-phosphate synthase () gene family in watermelon. The study analyzed the functional classification, evolutionary characteristics, and expression patterns of the watermelon genes family. Seven were identified and classified into two distinct classes according to gene structure and phylogeny. Evolutionary analysis suggested the role of purifying selection in the evolution of the family members. Further, acting elements related to plant hormones and abiotic stress were identified in the promoter region of the genes. The tissue-specific expression analysis showed that genes were widely expressed in roots, stems, leaves, flowers, and fruits, while was significantly induced under salt stress. The overexpression of in significantly improved salt tolerance. Finally, the STRING functional protein association networks suggested that the transcription factor ClMYB and ClbHLH regulate . Thus, the study indicates the critical role of in watermelon response to salt stress.
随着西瓜种植面积的增加,迫切需要探索西瓜的酶学和遗传资源,特别是在盐胁迫下。在已知的各种化合物中,海藻糖在调节包括植物在内的各种生物的非生物胁迫耐受性方面起着重要作用。因此,本研究全面分析了西瓜海藻糖-6-磷酸合酶()基因家族。该研究分析了西瓜基因家族的功能分类、进化特征和表达模式。鉴定出 7 个,并根据基因结构和系统发育分为两类。进化分析表明,家族成员的进化受到纯化选择的作用。此外,在基因启动子区鉴定到与植物激素和非生物胁迫相关的作用元件。组织特异性表达分析表明,基因在根、茎、叶、花和果实中广泛表达,而在盐胁迫下显著诱导表达。在中过表达显著提高了盐胁迫耐受性。最后,STRING 功能蛋白关联网络表明转录因子 ClMYB 和 ClbHLH 调节。因此,该研究表明在西瓜对盐胁迫的响应中起关键作用。