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MEGA7: Molecular Evolutionary Genetics Analysis Version 7.0 for Bigger Datasets.MEGA7:适用于更大数据集的分子进化遗传学分析版本7.0
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Comparative genomics of 43 strains of Xanthomonas citri pv. citri reveals the evolutionary events giving rise to pathotypes with different host ranges.43株柑橘溃疡病菌的比较基因组学揭示了导致具有不同寄主范围致病型的进化事件。
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对柑橘黄龙病菌致病型多样性的生态学和进化生物学见解

Ecological and Evolutionary Insights into Xanthomonas citri Pathovar Diversity.

作者信息

Bansal Kanika, Midha Samriti, Kumar Sanjeet, Patil Prabhu B

机构信息

CSIR-Institute of Microbial Technology, Chandigarh, India.

CSIR-Institute of Microbial Technology, Chandigarh, India

出版信息

Appl Environ Microbiol. 2017 Apr 17;83(9). doi: 10.1128/AEM.02993-16. Print 2017 May 1.

DOI:10.1128/AEM.02993-16
PMID:28258140
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5394309/
Abstract

Citrus canker, caused by pv. citri, is a serious disease of citrus plants worldwide. Earlier phylogenetic studies using housekeeping genes revealed that pv. citri is related to many other pathovars, which can be collectively referred as pathovars (XCPs). From the present study, we report the genome sequences of 18 XCPs and compared them with four XCPs available in the public domain. In a tree based on phylogenomic marker genes, all the XCPs form a monophyletic cluster, suggesting their origin from a common ancestor. Phylogenomic analysis using the type strain further established that all the XCPs belong to one species. Clonal analysis of the core genome revealed the presence of two major lineages within this monophyletic cluster consisting of some clonal variants. Incidentally, the majority of these XCPs were first noticed in India, corroborating their clonal relationship and their common origin. Comparative analysis revealed an open pan-genome and the role of interstrain genomic flux of these XCPs since their diversification from a common ancestor. Even though there are wide variations in type III gene effectomes, we identified three core effectors which can be valuable in resistance-breeding programs. Overall, genomic examination of ecological relatives allowed us to dissect the tremendous genomic potential of species to rapidly evolve into specialized strains infecting diverse crop plants. Host specialization is one of the characteristic features of highly evolved pathogens such as the group of phytopathogenic bacteria. Since the hosts involve staple crops and economically important fruits such as citrus, detailed understanding of the diversity and evolution of such strains infecting diverse plants is important for quarantine purposes. In the present study, we carried out genomic investigation of members of a phylogenetically and ecologically defined group of strains pathogenic to diverse plants, including citrus. This group includes the oldest pathovars and also recently emerged pathovars in a particular country where they are endemic. Our high-throughput genomic study has provided novel insights into the evolution of a unique lineage consisting of serious pathogens and their ecological relatives, suggesting the nature, scope, and pattern of rapid and recent diversification. Further, from the level of species to that of clonal variants, the study revealed interesting genomic patterns in diversification of a lineage and perhaps will inspire careful study of the host range of the included pathovars.

摘要

柑橘溃疡病由柑橘溃疡病菌引起,是一种在全球范围内危害柑橘类植物的严重病害。早期利用管家基因进行的系统发育研究表明,柑橘溃疡病菌与许多其他致病变种相关,这些致病变种可统称为Xanthomonas citri pathovars(XCPs)。在本研究中,我们报告了18个XCPs的基因组序列,并将它们与公共数据库中已有的4个XCPs进行了比较。在基于系统发育基因组标记基因构建的树状图中,所有XCPs形成一个单系聚类,表明它们起源于一个共同祖先。使用模式菌株进行的系统发育基因组分析进一步确定,所有XCPs属于同一个物种。核心基因组的克隆分析显示,在这个单系聚类中存在两个主要谱系,其中包含一些克隆变体。巧合的是,这些XCPs中的大多数最初是在印度被发现的,这证实了它们的克隆关系和共同起源。比较分析揭示了一个开放的泛基因组以及这些XCPs自共同祖先分化以来菌株间基因组通量的作用。尽管III型基因效应子存在广泛差异,但我们鉴定出了三个核心效应子,它们在抗性育种计划中可能具有重要价值。总体而言,对生态近缘种的基因组研究使我们能够剖析Xanthomonas物种迅速进化为感染多种作物植物的特化菌株的巨大基因组潜力。宿主专化是高度进化的病原体(如植物致病细菌Xanthomonas组)的特征之一。由于宿主涉及主粮作物和经济上重要的水果(如柑橘),详细了解感染不同植物的此类菌株的多样性和进化对于检疫目的至关重要。在本研究中,我们对一组在系统发育和生态上定义的、对包括柑橘在内的多种植物致病的Xanthomonas菌株成员进行了基因组研究。该组包括最古老的Xanthomonas致病变种以及在其为地方病的特定国家中最近出现的致病变种。我们的高通量基因组研究为一个由严重病原体及其生态近缘种组成的独特谱系的进化提供了新的见解,揭示了快速和近期多样化的性质、范围和模式。此外,从物种水平到克隆变体水平,该研究揭示了Xanthomonas谱系多样化中有趣的基因组模式,可能会激发对所包含致病变种宿主范围的仔细研究。