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Cold Stress and Nitrogen Deficiency Affected Protein Expression of Psychrotrophic Dyadobacter psychrophilus B2 and Pseudomonas jessenii MP1

机译:低温胁迫和氮缺乏对精神营养性嗜水性dyabacter B2和耶氏假单胞菌MP1蛋白表达的影响

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摘要

Nitrogen (N) deficiency and low temperature conditions are the prominent facet of Western Himalayan agro-ecosystems. A slight change in the environment alters the protein expression of the microorganisms. Therefore, proteomes of the two psychrotrophs Dyadobacter psychrophilus B2 and Pseudomonas jessenii MP1 were analyzed using two dimensional electrophoresis and MALDI–TOF–MS, to determine the physiological response of altitudinally different but indigenous microorganisms in response to cold stress under N depleting conditions. Functional assessment of 150 differentially expressed proteins from both the psychrotrophs revealed several mechanisms might be involved in cold stress adaptation, protein synthesis/modifications, energy metabolism, cell growth/maintenance, etc. In both the proteomes, abundance of the proteins related to energy production and stress were significantly increased while, proteins related to biosynthesis and energy consuming processes decreased. ATP synthase subunit alpha, beta, ATP-dependent Clp protease, Enolase, groL HtpG and N(2)-fixation sustaining protein CowN proteins were found to be expressed in both B2 and MP1, similarly to previously studied diazotrophs under low temperature N2 fixing conditions and therefore, can be considered as a biomarker for monitoring the nitrogen fixation in cold niches. Nevertheless, in both the diazotrophs, a good fraction of the proteins were related to hypothetical proteins which are still uncharacterized, thereby, suggesting the need for in-depth studies on cold adapted diazotrophs and their adaptive mechanisms.
机译:氮缺乏和低温条件是喜马拉雅西部农业生态系统的突出方面。环境的轻微变化会改变微生物的蛋白质表达。因此,使用二维电泳和MALDI-TOF-MS分析了两种精神营养菌DYDYPROPER Psychrophilus B2和Pseudomonas jessenii MP1的蛋白质组,以确定在氮耗竭条件下海拔高度不同但本土微生物对冷胁迫的生理响应。对两种精神营养菌中的150种差异表达蛋白质的功能评估表明,多种机制可能与冷应激适应,蛋白质合成/修饰,能量代谢,细胞生长/维持等有关。在两种蛋白质组中,蛋白质的大量与能量产生有关压力显着增加,而与生物合成和能量消耗过程有关的蛋白质减少。发现ATP合酶亚基α,β,ATP依赖性Clp蛋白酶,烯醇酶,groL HtpG和N(2)固定维持蛋白CowN蛋白在B2和MP1中均表达,类似于先前研究的在低温N2固定条件下的重氮细菌。因此,可以将其视为监测冷ni中固氮的生物标记。然而,在两种重氮营养菌中,很大一部分蛋白质与仍未表征的假设蛋白质有关,因此,表明需要对冷适应的重氮营养菌及其适应机制进行深入研究。

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