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“金黄萎蔫病”植原体的全基因组揭示了低基因组可塑性的特征。

The Complete Genome of the "Flavescence Dorée" Phytoplasma Reveals Characteristics of Low Genome Plasticity.

作者信息

Debonneville Christophe, Mandelli Léa, Brodard Justine, Groux Raphaël, Roquis David, Schumpp Olivier

机构信息

Virology, Bacteriology and Phytoplasmology, Agroscope, CH-1260 Nyon, Switzerland.

Plant Genome Dynamics, Agroscope, CH-1260 Nyon, Switzerland.

出版信息

Biology (Basel). 2022 Jun 23;11(7):953. doi: 10.3390/biology11070953.

Abstract

Members of the genus ' Phytoplasma' are obligate intracellular bacteria restricted to phloem sieve elements and are able to colonize several tissues and the hemolymph in their insect vectors. The current unfeasibility of axenic culture and the low complexity of genomic sequences are obstacles in assembling complete chromosomes. Here, a method combining pathogen DNA enrichment from infected insects and dual deep-sequencing technologies was used to obtain the complete genome of a phytoplasma causing Grapevine Flavescence dorée. The de novo assembly generated a circular chromosome of 654,223 bp containing 506 protein-coding genes. Quality assessment of the draft showed a high degree of completeness. Comparative analysis with other phytoplasmas revealed the absence of potential mobile units and a reduced amount of putative phage-derived segments, suggesting a low genome plasticity. Phylogenetic analyses identified Phytoplasma ziziphi as the closest fully sequenced relative. The "Flavescence dorée" phytoplasma strain CH genome also encoded for several putative effector proteins potentially playing a role in pathogen virulence. The availability of this genome provides the basis for the study of the pathogenicity mechanisms and evolution of the Flavescence dorée phytoplasma.

摘要

植原体属的成员是专性细胞内细菌,局限于韧皮部筛管分子,能够在其昆虫传播介体的多个组织和血淋巴中定殖。目前无菌培养的不可行以及基因组序列的低复杂性是组装完整染色体的障碍。在此,采用一种将从受感染昆虫中富集病原体DNA与双重深度测序技术相结合的方法,获得了一种引起葡萄黄化病的植原体的完整基因组。从头组装产生了一条654,223 bp的环状染色体,包含506个蛋白质编码基因。草图的质量评估显示出高度的完整性。与其他植原体的比较分析表明,不存在潜在的移动单元,推定的噬菌体衍生片段数量减少,这表明基因组可塑性较低。系统发育分析确定酸枣植原体是最接近的已完成全序列测定的亲缘种。“黄化病”植原体菌株CH的基因组还编码了几种推定的效应蛋白,这些蛋白可能在病原体毒力中发挥作用。该基因组的可得性为研究葡萄黄化病植原体的致病机制和进化提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1777/9312162/685c0337d66a/biology-11-00953-g001.jpg

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