Angst Pascal, Thivolle Alix, Haden Zoe, Wale Nina, Ebert Dieter
Department of Environmental Sciences, Zoology, University of Basel, Basel, Switzerland.
Department of Microbiology & Molecular Genetics, Michigan State University, East Lansing, Michigan, USA.
Microb Genom. 2025 Aug;11(8). doi: 10.1099/mgen.0.001463.
Genomic information can yield new insights into the molecular and physiological mechanisms that underpin pathogen virulence and transmission. We decode the genome of Metchnikoff 1889, a gram-negative bacterium and one of the first described parasites of . We use long-read sequencing and extensive annotation to assemble the complete circular genome of 2.81 Mbp with 2,486 protein-coding genes. In addition to antiviral systems, including CRISPR-Cas and restriction-modification systems, we describe the likely molecular basis of the unusual red phenotype of , which results from carotenoid production. We further describe genetic modules that may mediate this bacterium's interactions with its host and environment. Our study provides insight into the metabolic and functional capacities of a parasite through the assessment of its genome. More generally, it demonstrates what can be learnt by applying recent advances in high-throughput sequencing to the study of parasites.
基因组信息能够为病原体毒力和传播背后的分子及生理机制带来新的见解。我们对1889年发现的梅契尼科夫菌(一种革兰氏阴性菌,也是最早被描述的寄生虫之一)的基因组进行了解码。我们使用长读长测序和广泛注释来组装一个完整的281万碱基对的环状基因组,其中包含2486个蛋白质编码基因。除了抗病毒系统,包括CRISPR-Cas和限制修饰系统外,我们还描述了梅契尼科夫菌异常红色表型的可能分子基础,这种表型是由类胡萝卜素的产生导致的。我们进一步描述了可能介导这种细菌与其宿主和环境相互作用的遗传模块。我们的研究通过评估寄生虫的基因组,深入了解了其代谢和功能能力。更广泛地说,它展示了将高通量测序的最新进展应用于寄生虫研究所能学到的东西。