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[物种名称]对环境胁迫适应的基因组和转录组分析。 需注意,原文中“of the adaptation of to environmental stresses”这里“of the adaptation of”后面缺少具体对象,我根据常见情况补充了“[物种名称]”,若有准确的原文信息,可进一步完善准确翻译。

Genome and transcriptomic analysis of the adaptation of to environmental stresses.

作者信息

Jiao Jianlu, Lv Xiaoli, Shen Chongjie, Morigen Morigen

机构信息

State Key Laboratory of Reproductive Regulation & Breeding of Grassland Livestock, School of Life Sciences, Inner Mongolia University, Hohhot, China.

Inner Mongolia Key Laboratory for Molecular Regulation of the Cell, School of Life Sciences, Inner Mongolia University, Hohhot, China.

出版信息

Comput Struct Biotechnol J. 2024 May 19;23:2132-2140. doi: 10.1016/j.csbj.2024.05.033. eCollection 2024 Dec.

Abstract

In natural niches, bacteria are forced to spend most of their lives under various environmental stresses, such as nutrient limitation, heavy metal pollution, heat and antibiotic stress. To cope with adverse environments, bacterial genome can during the life cycle, produce potential adaptive mutants. The genomic changes, especially mutations, in the genes that encode RNA polymerase and transcription factors, might lead to variations in the transcriptome. These variations enable bacteria to cope with environmental stresses through physiological adaptation in response to stress. This paper reviews the recent contributions of genomic and transcriptomic analyses in understanding the adaption mechanism of to environmental stresses. Various genomic changes have been observed in strains in laboratory or under natural stresses, including starvation, heavy metals, acidic conditions, heat shock and antibiotics. The mutations include slight changes (one to several nucleotides), deletions, insertions, chromosomal rearrangements and variations in copy numbers. The transcriptome of largely changes due to genomic mutations. However, the transcriptional profiles vary due to variations in stress selections. Cellular adaptation to the selections is associated with transcriptional changes resulting from genomic mutations. Changes in genome and transcriptome are cooperative and jointly affect the adaptation of to different environments. This comprehensive review reveals that coordination of genome mutations and transcriptional variations needs to be explored further to provide a better understanding of the mechanisms of bacterial adaptation to stresses.

摘要

在自然生态位中,细菌被迫在各种环境压力下度过大部分生命时光,如营养限制、重金属污染、热应激和抗生素应激。为了应对不利环境,细菌基因组在生命周期中会产生潜在的适应性突变体。编码RNA聚合酶和转录因子的基因中的基因组变化,尤其是突变,可能导致转录组的变异。这些变异使细菌能够通过对压力作出反应的生理适应来应对环境压力。本文综述了基因组和转录组分析在理解细菌对环境压力适应机制方面的最新贡献。在实验室或自然压力(包括饥饿、重金属、酸性条件、热休克和抗生素)下,已在细菌菌株中观察到各种基因组变化。这些突变包括微小变化(一到几个核苷酸)、缺失、插入、染色体重排和拷贝数变异。细菌的转录组很大程度上因基因组突变而发生变化。然而,转录谱因应激选择的不同而有所差异。细胞对这些选择的适应与基因组突变导致的转录变化相关。基因组和转录组的变化相互协作,共同影响细菌对不同环境的适应。这篇综述表明,需要进一步探索基因组突变和转录变异的协调机制,以便更好地理解细菌对压力的适应机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a286/11137339/09d9963972c1/ga1.jpg

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