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脯氨酸赋予巨大芽孢杆菌 G18 耐酸性应激能力。

Proline confers acid stress tolerance to Bacillus megaterium G18.

机构信息

DBT-North East Centre for Agricultural Biotechnology, Assam Agricultural University, Jorhat, Assam, 785013, India.

Department of Agricultural Biotechnology, Assam Agricultural University, Jorhat, Assam, 785013, India.

出版信息

Sci Rep. 2022 May 25;12(1):8875. doi: 10.1038/s41598-022-12709-0.

Abstract

Proline plays a multifunctional role in several organisms including bacteria in conferring protection under stress conditions. In this paper we report the role of proline in conferring acid tolerance to Bacillus megaterium G18. An acid susceptible mutant of B. megaterium G18 which required proline for its growth under acid stress condition was generated through Tn5 mutagenesis. Further, targeted inactivation of proC involved in osmo-adaptive proline synthesis in B. megaterium G18 resulted in the loss of ability of the bacterium to grow at low pH (pH 4.5). Exogenous supply of proline (1 mM) to the growth medium restored the ability of the mutant cells to grow at pH 4.5 which was not the same in case of other osmoprotectants tested. Proline was produced and secreted to extracellular medium by B. megaterium G18 when growing in low pH condition as evidenced by the use of Escherichia coli proline auxotrophs and HPLC analysis. Further, pHT01 vector based expression of full length proC gene in the ∆proC mutant cells restored the survival capacity of the mutant cells in acidic pH, suggesting that proline production is an important strategy employed by B. megaterium G18 to survive under acid stress induced osmotic stress.

摘要

脯氨酸在包括细菌在内的几种生物体中发挥着多功能作用,可在应激条件下提供保护。本文报告了脯氨酸在赋予巨大芽孢杆菌 G18 耐酸性方面的作用。通过 Tn5 诱变产生了对酸敏感的巨大芽孢杆菌 G18 突变体,该突变体在酸胁迫条件下的生长需要脯氨酸。此外,靶向失活参与巨大芽孢杆菌 G18 渗透适应脯氨酸合成的 proC,导致细菌丧失在低 pH(pH 4.5)下生长的能力。在生长培养基中添加外源性脯氨酸(1mM)可恢复突变细胞在 pH 4.5 下的生长能力,而其他测试的渗透保护剂则没有相同的效果。当巨大芽孢杆菌 G18 在低 pH 条件下生长时,脯氨酸被产生并分泌到细胞外培养基中,这一点可以通过使用大肠杆菌脯氨酸营养缺陷型和 HPLC 分析来证明。此外,在 ∆proC 突变细胞中基于 pHT01 载体表达全长 proC 基因,恢复了突变细胞在酸性 pH 下的存活能力,表明脯氨酸的产生是巨大芽孢杆菌 G18 在酸性应激诱导的渗透应激下生存的重要策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c73/9133035/b5f0b8447838/41598_2022_12709_Fig1_HTML.jpg

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