Department of Crop Physiology, University of Agricultural Sciences Bangalore, GKVK Campus, Bengaluru, India.
Plant Biol (Stuttg). 2021 Nov;23(6):1190-1194. doi: 10.1111/plb.13311. Epub 2021 Jul 15.
Universal stress proteins (USPs) are a conserved group of proteins initially identified and characterized in bacteria. USPs are induced under multiple stresses, and are important for stress acclimation. We cloned a USP-like gene designated as MaUSP1-like from mulberry and expressed in bacteria and tobacco to examine its relevance in abiotic stress tolerance. Escherichia coli and tobacco cells expressing MaUSP1-like gene were exposed to different abiotic stresses, and cell survival and growth was recorded to assess the stress effects. MaUSP1-like gene conferred tolerance to E. coli cells under NaCl-induced salt stress, PEG8000-induced desiccation stress, cadmium chloride-induced heavy metal stress, and heat stress. Overexpression of MaUSP1-like sustained cell division and growth in tobacco cells under salt stress. The results demonstrate that MaUSP1-like gene is capable of conferring cellular level tolerance in both prokaryotic and eukaryotic systems, under abiotic stress. The finding opened up an option to argue that maintenance of cellular level tolerance is crucial for sustenance of growth under stress and cellular level tolerance can be improved by overexpressing genes like USPs.
普遍应激蛋白(USPs)是一类在细菌中最初被发现和鉴定的保守蛋白。USPs 可被多种应激诱导,并对适应应激非常重要。我们从桑树中克隆了一个命名为 MaUSP1-like 的 USP 样基因,并在细菌和烟草中进行表达,以研究其在非生物胁迫耐受中的相关性。表达 MaUSP1-like 基因的大肠杆菌和烟草细胞暴露于不同的非生物胁迫下,记录细胞的存活和生长情况,以评估胁迫的影响。MaUSP1-like 基因可使大肠杆菌细胞耐受 NaCl 诱导的盐胁迫、PEG8000 诱导的干燥胁迫、氯化镉诱导的重金属胁迫和热胁迫。MaUSP1-like 的过表达可维持烟草细胞在盐胁迫下的细胞分裂和生长。研究结果表明,MaUSP1-like 基因可在原核和真核系统中赋予细胞水平的耐受能力,以应对非生物胁迫。这一发现为以下观点提供了一个选择,即维持细胞水平的耐受能力对于在胁迫下维持生长至关重要,并且可以通过过表达像 USPs 这样的基因来提高细胞水平的耐受能力。