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Comparative genomic analysis of Erwinia amylovora reveals novel insights in phylogenetic arrangement, plasmid diversity, and streptomycin resistance

机译:Erwinia Amylovora的比较基因组分析显示了系统发育布置,质粒多样性和链霉素抗性的新颖见解

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Erwinia amylovora is a destructive pathogen of Rosaceous plants and an economic concern worldwide. Herein, we report 93 new E. amylovora genomes from North America, Europe, the Mediterranean, and New Zealand. This new genomic information demonstrates the existence of three primary clades of Amygdaloideae (apple and pear) infecting E. amylovora and suggests all three independently originate from North America. The comprehensive sequencing also identified and confirmed the presence of 7 novel plasmids ranging in size from 2.9 to 34.7 kbp. While the function of the novel plasmids is unknown, the plasmids pEAR27, pEAR28, and pEAR35 encoded for type IV secretion systems. The strA-strB gene pair and the K43R point mutation at codon 43 of the rpsL gene have been previously documented to confer streptomycin resistance. Of the sequenced isolates, rpsL-based streptomycin resistance was more common and was found with the highest frequency in the Western North American clade.
机译:Erwinia Amylovora是罗萨斯植物的破坏性病原体和全世界经济关注。在此,我们从北美,欧洲,地中海和新西兰报告93个新的E.氨基莫拉基因组。这种新的基因组信息证明了杏仁淋巴瘤(苹果和梨)的三种原发性腕表感染E. Amylovora,并建议所有三个独立源自北美。综合测序还鉴定并确认了7种大小范围为2.9至34.7kbp的新细胞的存在。虽然新型质粒的功能是未知的,但是质粒硅胶27,PEAR28和PEA35编码IV型分泌系统。先前记录了RPSL基因的密码子43的STRA-STRB基因对和K43R点突变以赋予链霉素抗性。测序的分离物中,RPSL基链霉素抗性更常见,并以最高频率的频率在西北方的思考中发现。

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