基于知识的发现:设计CRISPR-CAS系统对抗嗜热菌入侵的移动组。

Systems and Synthetic Biology Pub Date : 2015-09-01 Epub Date: 2015-08-06 DOI:10.1007/s11693-015-9176-8
P Chellapandi, J Ranjani
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引用次数: 7

摘要

聚集规律间隔的短回文重复序列(crispr)是原核生物基因组参与抵抗细菌病毒和噬菌体的直接特征。在此,我们鉴定了CRISPR基因座和CRISPR相关序列(CAS)基因,以揭示它们对嗜热古菌和细菌基因组入侵者的免疫。本研究的基因组调查表明,不同菌株的CRISPR-CAS系统的基因组分布是不同的,这是由入侵移动的程度决定的。在许多热堆中发现直接重复序列在一定程度上是相等的,但它们的间隔在每个菌株中是不同的。CAS超家族的系统发育分析表明,基因cmr、csh、csx11、HD domain、devR属于CAS基因家族的亚型。嗜热生物cas基因家族的成员在密切相关的基因组中存在功能分化,可能有助于形成多种防御策略。然而,基因组动力学、地质变异和寄主防御机制有助于它们在嗜热生物中共享分子功能。嗜热古细菌、嗜热球菌和嗜热细菌、动岩菌和热菌都显示出聚集cas基因的超级操纵子样外观,这些基因通常是为其防御途径而进化的。在嗜热太古动物Caldivirga maquilingensis中鉴定了一个cmr操纵子与一个特定的启动子。总的来说,我们得出结论,基于知识的基因组调查和基于系统发育的功能分配建议在未来的合成生物学中设计一个可靠的遗传调控回路,从CRISPR-CAS系统、获得性防御途径到嗜热生物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Knowledge-based discovery for designing CRISPR-CAS systems against invading mobilomes in thermophiles.

Knowledge-based discovery for designing CRISPR-CAS systems against invading mobilomes in thermophiles.

Knowledge-based discovery for designing CRISPR-CAS systems against invading mobilomes in thermophiles.

Knowledge-based discovery for designing CRISPR-CAS systems against invading mobilomes in thermophiles.

Clustered regularly interspaced short palindromic repeats (CRISPRs) are direct features of the prokaryotic genomes involved in resistance to their bacterial viruses and phages. Herein, we have identified CRISPR loci together with CRISPR-associated sequences (CAS) genes to reveal their immunity against genome invaders in the thermophilic archaea and bacteria. Genomic survey of this study implied that genomic distribution of CRISPR-CAS systems was varied from strain to strain, which was determined by the degree of invading mobiloms. Direct repeats found to be equal in some extent in many thermopiles, but their spacers were differed in each strain. Phylogenetic analyses of CAS superfamily revealed that genes cmr, csh, csx11, HD domain, devR were belonged to the subtypes of cas gene family. The members in cas gene family of thermophiles were functionally diverged within closely related genomes and may contribute to develop several defense strategies. Nevertheless, genome dynamics, geological variation and host defense mechanism were contributed to share their molecular functions across the thermophiles. A thermophilic archaean, Thermococcus gammotolerans and thermophilic bacteria, Petrotoga mobilis and Thermotoga lettingae have shown superoperons-like appearance to cluster cas genes, which were typically evolved for their defense pathways. A cmr operon was identified with a specific promoter in a thermophilic archaean, Caldivirga maquilingensis. Overall, we concluded that knowledge-based genomic survey and phylogeny-based functional assignment have suggested for designing a reliable genetic regulatory circuit naturally from CRISPR-CAS systems, acquired defense pathways, to thermophiles in future synthetic biology.

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