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Differential Distribution of Type II CRISPR-Cas Systems in Agricultural and Nonagricultural Campylobacter coli and Campylobacter jejuni Isolates Correlates with Lack of Shared Environments

机译:农业和非农业弯曲杆菌和空肠弯曲菌中II型CRISPR-Cas系统的差异分布与缺乏共享环境相关

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摘要

CRISPR (clustered regularly interspaced palindromic repeats)-Cas (CRISPR-associated) systems are sequence-specific adaptive defenses against phages and plasmids which are widespread in prokaryotes. Here we have studied whether phylogenetic relatedness or sharing of environmental niches affects the distribution and dissemination of Type II CRISPR-Cas systems, first in 132 bacterial genomes from 15 phylogenetic classes, ranging from Proteobacteria to Actinobacteria. There was clustering of distinct Type II CRISPR-Cas systems in phylogenetically distinct genera with varying G+C%, which share environmental niches. The distribution of CRISPR-Cas within a genus was studied using a large collection of genome sequences of the closely related Campylobacter species Campylobacter jejuni (N = 3,746) and Campylobacter coli (N = 486). The Cas gene cas9 and CRISPR-repeat are almost universally present in C. jejuni genomes (98.0% positive) but relatively rare in C. coli genomes (9.6% positive). Campylobacter jejuni and agricultural C. coli isolates share the C. jejuni CRISPR-Cas system, which is closely related to, but distinct from the C. coli CRISPR-Cas system found in C. coli isolates from nonagricultural sources. Analysis of the genomic position of CRISPR-Cas insertion suggests that the C. jejuni-type CRISPR-Cas has been transferred to agricultural C. coli. Conversely, the absence of the C. coli-type CRISPR-Cas in agricultural C. coli isolates may be due to these isolates not sharing the same environmental niche, and may be affected by farm hygiene and biosecurity practices in the agricultural sector. Finally, many CRISPR spacer alleles were linked with specific multilocus sequence types, suggesting that these can assist molecular epidemiology applications for C. jejuni and C. coli.
机译:CRISPR(聚类的规则间隔回文重复序列)-Cas(CRISPR相关)系统是针对在原核生物中广泛分布的噬菌体和质粒的序列特异性自适应防御。在这里,我们研究了系统发育的相关性或环境环境的共享是否会影响II型CRISPR-Cas系统的分布和传播,首先是从15个系统发育类别(从变形杆菌到放线菌)的132个细菌基因组中。系统发育上不同的属中有不同的II型CRISPR-Cas系统成簇,具有不同的G + C%,它们共享环境利基。使用大量紧密相关的空肠弯曲杆菌空肠弯曲杆菌(N = 3746)和大肠弯曲杆菌(N = 486)的基因组序列,研究了CRISPR-Cas在一个属中的分布。 Cas基因cas9和CRISPR-repeat几乎普遍存在于空肠弯曲杆菌基因组中(阳性率为98.0%),但在大肠杆菌基因组中相对罕见(阳性率为9.6%)。空肠弯曲杆菌和农业大肠杆菌分离物共享空肠弯曲杆菌CRISPR-Cas系统,该系统与非农业来源的大肠杆菌分离物中发现的大肠杆菌CRISPR-Cas系统密切相关,但又有所不同。对CRISPR-Cas插入的基因组位置的分析表明,空肠弯曲杆菌型CRISPR-Cas已转移到农业大肠杆菌中。相反,农业 C中不存在大肠杆菌类型的CRISPR-Cas。大肠杆菌的分离株可能是由于这些分离株没有相同的环境利基,并​​且可能受到农业部门的农场卫生和生物安全措施的影响。最后,许多CRISPR间隔区等位基因与特定的多基因座序列类型相关,这表明这些基因可以帮助 C的分子流行病学应用。空肠 C。大肠杆菌

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