Batarseh Tiffany N, Batarseh Sarah N, Morales-Cruz Abraham, Gaut Brandon S
Department of Integrative Biology, UC Berkeley, Berkeley, CA, United States.
Department of Plant and Microbial Biology, UC Berkeley, Berkeley, CA, United States.
Front Microbiol. 2023 Jun 26;14:1206094. doi: 10.3389/fmicb.2023.1206094. eCollection 2023.
' Liberibacter' is a group of bacterial species that are obligate intracellular plant pathogens and cause Huanglongbing disease of citrus trees and Zebra Chip in potatoes. Here, we examined the extent of intra- and interspecific genetic diversity across the genus using comparative genomics. Our approach examined a wide set of genome sequences including five pathogenic species and one species not known to cause disease. By performing comparative genomics analyses, we sought to understand the evolutionary history of this genus and to identify genes or genome regions that may affect pathogenicity. With a set of 52 genomes, we performed comparative genomics, measured genome rearrangement, and completed statistical tests of positive selection. We explored markers of genetic diversity across the genus, such as average nucleotide identity across the whole genome. These analyses revealed the highest intraspecific diversity amongst the ' Liberibacter solanacearum' species, which also has the largest plant host range. We identified sets of core and accessory genes across the genus and within each species and measured the ratio of nonsynonymous to synonymous mutations (dN/dS) across genes. We identified ten genes with evidence of a history of positive selection in the genus, including genes in the Tad complex, which have been previously implicated as being highly divergent in the ' L. capsica' species based on high values of dN.
“韧皮部杆菌属”是一类细菌物种,它们是专性细胞内植物病原体,可导致柑橘黄龙病和马铃薯斑马薯片病。在此,我们使用比较基因组学研究了该属内种内和种间遗传多样性的程度。我们的方法研究了大量基因组序列,包括五个致病物种和一个未知会导致疾病的物种。通过进行比较基因组学分析,我们试图了解该属的进化历史,并鉴定可能影响致病性的基因或基因组区域。利用一组52个基因组,我们进行了比较基因组学研究,测量了基因组重排,并完成了正选择的统计测试。我们探索了该属内遗传多样性的标记,例如全基因组的平均核苷酸同一性。这些分析揭示了“茄科韧皮部杆菌”物种内最高的种内多样性,该物种也具有最大的植物宿主范围。我们鉴定了该属内以及每个物种内的核心基因和辅助基因集,并测量了各基因非同义突变与同义突变的比率(dN/dS)。我们鉴定出该属中有正选择历史证据的十个基因,包括Tad复合体中的基因,基于高dN值,这些基因先前在“辣椒韧皮部杆菌”物种中被认为具有高度差异。