Key Laboratory of Saline-Alkali Vegetation Ecology Restoration, Ministry of Education, College of Life Sciences, Northeast Forestry University, Harbin 150040, China.
Int J Mol Sci. 2023 Apr 9;24(8):6950. doi: 10.3390/ijms24086950.
Saline-alkali stress seriously affects the yield and quality of crops, threatening food security and ecological security. Improving saline-alkali land and increasing effective cultivated land are conducive to sustainable agricultural development. Trehalose, a nonreducing disaccharide, is closely related to plant growth and development and stress response. Trehalose 6-phosphate synthase (TPS) and trehalose-6-phosphate phosphatase (TPP) are key enzymes catalyzing trehalose biosynthesis. To elucidate the effects of long-term saline-alkali stress on trehalose synthesis and metabolism, we conducted an integrated transcriptome and metabolome analysis. As a result, 13 and 11 genes were identified in quinoa ( Willd.) and were named and according to the order of their Gene IDs. Through phylogenetic analysis, the CqTPS family is divided into two classes, and the CqTPP family is divided into three classes. Analyses of physicochemical properties, gene structures, conservative domains and motifs in the proteins, and cis-regulatory elements, as well as evolutionary relationships, indicate that the TPS and TPP family characteristics are highly conserved in quinoa. Transcriptome and metabolome analyses of the sucrose and starch metabolism pathway in leaves undergoing saline-alkali stress indicate that and Class II genes are involved in the stress response. Moreover, the accumulation of some metabolites and the expression of many regulatory genes in the trehalose biosynthesis pathway changed significantly, suggesting the metabolic process is important for the saline-alkali stress response in quinoa.
盐-碱胁迫严重影响作物的产量和品质,威胁粮食安全和生态安全。改良盐-碱地,增加有效耕地面积,有利于农业可持续发展。海藻糖是一种非还原性二糖,与植物的生长发育和逆境响应密切相关。海藻糖-6-磷酸合酶(TPS)和海藻糖-6-磷酸磷酸酶(TPP)是催化海藻糖合成的关键酶。为了阐明长期盐-碱胁迫对海藻糖合成和代谢的影响,我们进行了综合转录组和代谢组分析。结果在藜麦(Willd.)中鉴定出 13 个和 11 个基因,分别根据其基因 ID 的顺序命名为和。通过系统发育分析,CqTPS 家族分为两类,CqTPP 家族分为三类。对蛋白质的理化性质、基因结构、保守结构域和基序、顺式调控元件以及进化关系进行分析表明,藜麦 TPS 和 TPP 家族的特征高度保守。叶片中蔗糖和淀粉代谢途径在盐-碱胁迫下的转录组和代谢组分析表明,和类 II 基因参与了胁迫响应。此外,一些代谢物的积累和海藻糖合成途径中许多调节基因的表达发生了显著变化,表明代谢过程对藜麦的盐-碱胁迫响应很重要。