Asia-Pacific Centre for Animal Health, Melbourne Veterinary School, Faculty of Science, The University of Melbourne, VIC, Australia.
Institute of Molecular Medicine and Experimental Immunology, Faculty of Medicine, University of Bonn, NRW, Germany.
Microb Genom. 2024 Mar;10(3). doi: 10.1099/mgen.0.001227.
has been isolated from diseased cats and horses, but to date only a single fully assembled genome of this species, of an isolate from a horse, has been characterized. This study aimed to characterize and compare the completely assembled genomes of four clinical isolates of from three domestic cats, assembled with the aid of short- and long-read sequencing methods. The completed genomes encoded a median of 759 ORFs (range 743-777) and had a median average nucleotide identity of 98.2 % with the genome of the available equid origin reference strain. Comparative genomic analysis revealed the occurrence of multiple horizontal gene transfer events and significant genome reassortment. This had resulted in the acquisition or loss of numerous genes within the Australian felid isolate genomes, encoding putative proteins involved in DNA transfer, metabolism, DNA replication, host cell interaction and restriction modification systems. Additionally, a novel mycoplasma phage was detected in one Australian felid isolate by genomic analysis and visualized using cryo-transmission electron microscopy. This study has highlighted the complex genomic dynamics in different host environments. Furthermore, the sequences obtained in this work will enable the development of new diagnostic tools, and identification of future infection control and treatment options for the respiratory disease complex in cats.
已从患病的猫和马中分离出来,但迄今为止,仅对来自马的分离株的该物种的单个完全组装基因组进行了特征描述。本研究旨在借助短读和长读测序方法,对来自三只家猫的四个临床分离株的完全组装基因组进行特征描述和比较。完成的基因组编码了中位数为 759 个 ORF(范围 743-777),与可获得的源自马的参考菌株的基因组的平均核苷酸同一性中位数为 98.2%。比较基因组分析显示发生了多次水平基因转移事件和显著的基因组重排。这导致澳大利亚猫科动物分离株基因组中获得或丢失了许多基因,这些基因编码参与 DNA 转移、代谢、DNA 复制、宿主细胞相互作用和限制修饰系统的假定蛋白。此外,通过基因组分析在一个澳大利亚猫科动物 分离株中检测到一种新型支原体噬菌体,并通过冷冻传输电子显微镜进行可视化。本研究强调了不同宿主环境中复杂的基因组动态。此外,本工作中获得的序列将能够开发新的诊断工具,并确定未来针对猫呼吸道疾病复杂感染的控制和治疗选择。