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解析嗜热细菌 Anoxybacillus rupiensis TPH1 在低温下的适应策略。

Untangling the adaptive strategies of thermophilic bacterium Anoxybacillus rupiensis TPH1 under low temperature.

机构信息

Laboratory of Cyanobacterial Systematics and Stress Biology, Department of Botany, Banaras Hindu University, Varanasi, India.

Laboratory of Microbial Genetics, Department of Botany, Banaras Hindu University, Varanasi, India.

出版信息

Extremophiles. 2024 Jul 17;28(3):31. doi: 10.1007/s00792-024-01346-2.

Abstract

The present study investigates the low temperature tolerance strategies of thermophilic bacterium Anoxybacillus rupiensis TPH1, which grows optimally at 55 °C , by subjecting it to a temperature down-shift of 10 °C (45 °C) for 4 and 6 h followed by studying its growth, morphophysiological, molecular and proteomic responses. Results suggested that although TPH1 experienced increased growth inhibition, ROS production, protein oxidation and membrane disruption after 4 h of incubation at 45 °C yet maintained its DNA integrity and cellular structure through the increased expression of DNA damage repair and cell envelop synthesizing proteins and also progressively alleviated growth inhibition by 20% within two hours i.e., 6 h, by inducing the expression of antioxidative enzymes, production of unsaturated fatty acids, capsular and released exopolysaccharides and forming biofilm along with chemotaxis proteins. Conclusively, the adaptation of Anoxybacillus rupiensis TPH1 to lower temperature is mainly mediated by the synthesis of large numbers of defense proteins and exopolysaccharide rich biofilm formation.

摘要

本研究通过将嗜热菌 Anoxybacillus rupiensis TPH1 的温度降低 10°C(45°C)4 小时和 6 小时,研究其生长、形态生理、分子和蛋白质组学反应,探讨了该菌的低温耐受策略。结果表明,尽管 TPH1 在 45°C 孵育 4 小时后经历了生长抑制、ROS 产生、蛋白质氧化和膜破坏的增加,但通过增加 DNA 损伤修复和细胞包膜合成蛋白的表达,保持了 DNA 完整性和细胞结构,并且通过诱导抗氧化酶的表达、不饱和脂肪酸的产生、荚膜和释放胞外多糖以及形成生物膜和趋化蛋白,在两小时内(即 6 小时)将生长抑制缓解了 20%。总之,Anoxybacillus rupiensis TPH1 对低温的适应主要是通过大量防御蛋白的合成和富含胞外多糖的生物膜形成来介导的。

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