Department of Biotechnology, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal 576104, Karnataka, India; Manipal Biomachines, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal 576104, Karnataka, India.
Department of Chemical Engineering, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal 576104, Karnataka, India.
Microbiol Res. 2022 Oct;263:127115. doi: 10.1016/j.micres.2022.127115. Epub 2022 Jul 9.
The homeostasis of extremophiles is one that is a diamond hidden in the rough. The way extremophiles adapt to their extreme environments gives a clue into the true extent of what is possible when it comes to life. The discovery of new extremophiles is ever-expanding and an explosion of knowledge surrounding their successful existence in extreme environments is obviously perceived in scientific literature. The present review paper aims to provide a comprehensive view on the different mechanisms governing the extreme adaptations of extremophiles, along with insights and discussions on what the limits of life can possibly be. The membrane adaptations that are vital for survival are discussed in detail. It was found that there are many alterations in the genetic makeup of such extremophiles when compared to their mesophilic counterparts. Apart from the several proteins involved, the significance of chaperones, efflux systems, DNA repair proteins and a host of other enzymes that adapt to maintain functionality, are enlisted, and explained. A deeper understanding of the underlying mechanisms could have a plethora of applications in the industry. There are cases when certain microbes can withstand extreme doses of antibiotics. Such microbes accumulate numerous genetic elements (or plasmids) that possess genes for multiple drug resistance (MDR). A deeper understanding of such mechanisms helps in the development of potential approaches and therapeutic schemes for treating pathogen-mediated outbreaks. An in-depth analysis of the parameters - radiation, pressure, temperature, pH value and metal resistance - are discussed in this review, and the key to survival in these precarious niches is described.
极端微生物的内稳态犹如一颗藏在粗糙表面下的钻石。极端微生物适应其极端环境的方式为我们提供了一个线索,让我们了解到生命的可能性是多么的广阔。新的极端微生物的发现正在不断扩展,有关它们在极端环境中成功生存的知识爆炸显然在科学文献中得到了体现。本综述论文旨在全面探讨控制极端微生物极端适应的不同机制,并深入探讨生命的极限可能在哪里。详细讨论了对生存至关重要的膜适应。与中温微生物相比,发现这些极端微生物的基因组成有许多改变。除了涉及的几种蛋白质外,还列出并解释了伴侣蛋白、外排系统、DNA 修复蛋白和许多其他适应以维持功能的酶的重要性。对潜在机制的深入了解可能在工业中有广泛的应用。有些情况下,某些微生物可以承受极端剂量的抗生素。这些微生物积累了大量具有多种药物抗性(MDR)基因的遗传元件(或质粒)。对这种机制的深入了解有助于开发针对病原体介导的爆发的潜在方法和治疗方案。本综述深入分析了辐射、压力、温度、pH 值和金属抗性等参数,并描述了在这些不稳定小生境中生存的关键。