候选植物原体(Candidatus Phytoplasma rubi)与其他16SrV植物原体基因组的比较揭示了特殊的类群特征

Jan Werner Böhm, Dominik Duckeck, Bojan Duduk, Bernd Schneider, Michael Kube
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摘要

植物原体与重要的细菌性疾病有关,在农业和观赏作物中引起严重的症状。' Candidatus Phytoplasma rubi '与树莓(Rubus idaeus)和黑莓(Rubus subgenus Rubus)中的Rubus stunt有关,导致节间缩短,萼片拉长,增殖,层序和绿化。最近发表的“Ca。P. rubi ' RS与16SrV植物原体的全基因组进行了全面的基因组比较,其中包括黄萎病相关植物原体CH菌株和两个' Candidatus ziziphi '菌株。除了具有植物原体的典型转运体和代谢特征外,16srv组蔗糖的磷酸化和l -乳酸羧酸的利用也很明显。关于效应库和参与宿主定植的编码免疫显性膜蛋白,该小组揭示了包含可变膜蛋白A和b的保守特征。然而,SAP11-和SAP54同源物仅限于' Ca。P. rubi ' RS和' Ca。p . ziziphi”。基于基因组序列的系统发育分析支持这些基因组与桤木植物原体的密切关系。这些分析支持了移动组对植物原体进化的影响,但也强调了在未来鉴定具有更大代谢库的植物原体的可能性。
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Genome Comparison of ‘Candidatus Phytoplasma rubi’ with Genomes of Other 16SrV Phytoplasmas Highlights Special Group Features
Phytoplasmas are associated with important bacterial diseases, causing severe symptoms in agricultural and ornamental crops. ‘Candidatus Phytoplasma rubi’, associated with the Rubus stunt in raspberries (Rubus idaeus) and blackberries (Rubus subgenus Rubus), causes shortened internodes, elongated sepals, proliferation, phyllody, and virescence. The recently published genome of ‘Ca. P. rubi’ RS enabled a comprehensive genomic comparison to the complete genomes of 16SrV phytoplasmas, comprising strains of the flavescence dorée-associated phytoplasma CH and two ‘Candidatus Phytoplasma ziziphi’ strains. Besides the typical transporters and metabolic features of phytoplasmas, the phosphorolysis of sucrose and the utilization of the carboxylic acid L-lactate became apparent for the 16SrV-group. With respect to the effector repertoire and the encoded immunodominant membrane proteins involved in host colonization, the group revealed conserved features that comprise the variable membrane proteins A and B. However, SAP11- and SAP54 orthologs were limited to ‘Ca. P. rubi’ RS and ‘Ca. P. ziziphi’. Genome-sequence-based phylogenetic analysis supports the close relationship of these genomes relative to alder yellows phytoplasmas. The analyses supported the impact of the mobilome on phytoplasma evolution but also highlighted that there is the possibility of identifying phytoplasmas with a larger metabolic repertoire in the future.
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