Department of Microbiology, College of Basic Sciences and Humanities, G.B. Pant University of Agriculture and Technology, Pantnagar, 263145, Uttarakhand, India,
Curr Microbiol. 2014 Apr;68(4):543-50. doi: 10.1007/s00284-013-0508-1. Epub 2013 Dec 21.
Himalayas are considered as a reservoir of diversified and dynamic gene pool. This study describes the response of a Himalayan psychrophilic diazotroph to low temperature diazotrophy. Seven cold adaptive N2 fixing bacteria were isolated and identified as Bacillus sp., Arthrobacter sp., Rhodococcus sp., Pseudomonas sp., etc. In order to examine the physiological response to low temperature diazotrophy, differential proteomic analysis of Pseudomonas migulae S10724 strain was carried out using two dimensional electrophoresis and MALDI-TOF-MS. Functional assessment of 66 differentially expressed proteins revealed several mechanisms thought to be involved in low temperature adaptation and nitrogen fixation, including general stress adaptation, protein and nucleic acid synthesis, energy metabolism, cell growth/maintenance, etc. Major fraction of the upregulated proteins was stress proteins, while majority of the downregulated proteins were related to cell division. Furthermore, MALDI-TOF-MS-based identification of randomly selected peptides encountered two exclusively expressed proteins: NifU family SUF system FeS assembly protein and membrane protein, suppressor for copper-sensitivity B precursor which might have a crucial role at low temperature nitrogen fixation. To the best of our knowledge, this is the first report of the isolation and differential proteomic analysis of psychrophilic diazotroph from Himalayan high altitude rhizospheric soil.
喜马拉雅山脉被认为是多样化和动态基因库的聚集地。本研究描述了一种喜马拉雅嗜冷固氮菌对低温固氮的反应。从高寒根际土壤中分离并鉴定出 7 株耐冷固氮菌,分别属于芽孢杆菌属、节杆菌属、小单孢菌属、假单胞菌属等。为了研究低温固氮的生理响应,采用二维电泳和 MALDI-TOF-MS 对 Pseudomonas migulae S10724 菌株进行了差异蛋白质组学分析。对 66 种差异表达蛋白的功能评估揭示了几种可能参与低温适应和固氮的机制,包括一般应激适应、蛋白质和核酸合成、能量代谢、细胞生长/维持等。上调蛋白的主要部分是应激蛋白,而下调蛋白的大部分与细胞分裂有关。此外,基于 MALDI-TOF-MS 的随机选择肽的鉴定遇到了两种仅表达的蛋白质:NifU 家族 SUF 系统 FeS 组装蛋白和膜蛋白,这可能对低温固氮具有关键作用。据我们所知,这是首次从喜马拉雅高海拔根际土壤中分离和进行低温固氮菌差异蛋白质组学分析的报道。