...
首页> 外文期刊>Microbiology and Molecular Biology Reviews >Genome of the Extremely Radiation-Resistant Bacterium Deinococcus radiodurans Viewed from the Perspective of Comparative Genomics
【24h】

Genome of the Extremely Radiation-Resistant Bacterium Deinococcus radiodurans Viewed from the Perspective of Comparative Genomics

机译:从比较基因组学的角度看,极耐辐射细菌Deinococcus radiodurans的基因组。

获取原文
           

摘要

The bacterium Deinococcus radiodurans shows remarkable resistance to a range of damage caused by ionizing radiation, desiccation, UV radiation, oxidizing agents, and electrophilic mutagens. D. radiodurans is best known for its extreme resistance to ionizing radiation; not only can it grow continuously in the presence of chronic radiation (6 kilorads/h), but also it can survive acute exposures to gamma radiation exceeding 1,500 kilorads without dying or undergoing induced mutation. These characteristics were the impetus for sequencing the genome of D. radiodurans and the ongoing development of its use for bioremediation of radioactive wastes. Although it is known that these multiple resistance phenotypes stem from efficient DNA repair processes, the mechanisms underlying these extraordinary repair capabilities remain poorly understood. In this work we present an extensive comparative sequence analysis of the Deinococcus genome. Deinococcus is the first representative with a completely sequenced genome from a distinct bacterial lineage of extremophiles, the Thermus-Deinococcus group. Phylogenetic tree analysis, combined with the identification of several synapomorphies between Thermus and Deinococcus, supports the hypothesis that it is an ancient group with no clear affinities to any of the other known bacterial lineages. Distinctive features of the Deinococcus genome as well as features shared with other free-living bacteria were revealed by comparison of its proteome to the collection of clusters of orthologous groups of proteins. Analysis of paralogs in Deinococcus has revealed several unique protein families. In addition, specific expansions of several other families including phosphatases, proteases, acyltransferases, and Nudix family pyrophosphohydrolases were detected. Genes that potentially affect DNA repair and recombination and stress responses were investigated in detail. Some proteins appear to have been horizontally transferred from eukaryotes and are not present in other bacteria. For example, three proteins homologous to plant desiccation resistance proteins were identified, and these are particularly interesting because of the correlation between desiccation and radiation resistance. Compared to other bacteria, the D. radiodurans genome is enriched in repetitive sequences, namely, IS-like transposons and small intergenic repeats. In combination, these observations suggest that several different biological mechanisms contribute to the multiple DNA repair-dependent phenotypes of this organism.
机译:迪诺球菌对由电离辐射,干燥,紫外线辐射,氧化剂和亲电诱变剂引起的一系列损害表现出卓越的抵抗力。 D. radiodurans以其极强的抗电离辐射能力而闻名。它不仅可以在存在慢性辐射(6千拉德/小时)的情况下连续生长,而且还可以在超过1500千拉德的伽马辐射的急性暴露下存活下来,而不会死亡或经历诱发的突变。这些特征是对放射性杜氏梭菌基因组进行测序的动力,以及其在放射性废物生物修复中的应用的不断发展。尽管已知这些多重抗性表型源于有效的DNA修复过程,但对这些非凡修复能力的机制仍知之甚少。在这项工作中,我们提出了Deinococcus基因组的广泛的比较序列分析。 Deinococcus是嗜热菌-Deinococcus组中来自极端微生物的独特细菌谱系,具有完整测序基因组的第一个代表。系统发育树分析,再加上Thermus和Deinococcus之间的几种同形异型的识别,支持以下假设:它是古老的群体,与任何其他已知细菌谱系均无明显亲和力。通过将其蛋白质组与直系同源蛋白质簇的集合进行比较,揭示了Deinococcus基因组的独特特征以及与其他自由活动细菌共有的特征。对Deinococcus中旁系同源物的分析揭示了几个独特的蛋白质家族。此外,还检测到其他几个家族的特异性扩增,包括磷酸酶,蛋白酶,酰基转移酶和Nudix家族的焦磷酸水解酶。详细研究了可能影响DNA修复,重组和应激反应的基因。一些蛋白质似乎已经从真核生物水平转移,而在其他细菌中不存在。例如,鉴定了与植物抗干燥性蛋白质同源的三种蛋白质,由于抗干燥性和抗辐射性之间的相关性,这些蛋白质特别有趣。与其他细菌相比,D。radiodurans的基因组富含重复序列,即IS样转座子和小的基因间重复序列。综上所述,这些观察结果表明几种不同的生物学机制有助于该生物体的多种DNA修复依赖性表型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号