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包括苹果和亚洲梨致病型在内的物种组的基因组学、进化史与诊断学

Genomics Evolutionary History and Diagnostics of the Species Group Including Apple and Asian Pear Pathotypes.

作者信息

Armitage Andrew D, Cockerton Helen M, Sreenivasaprasad Surapareddy, Woodhall James, Lane Charles R, Harrison Richard J, Clarkson John P

机构信息

NIAB EMR, East Malling, United Kingdom.

Natural Resources Institute, University of Greenwich, Chatham Maritime, London, United Kingdom.

出版信息

Front Microbiol. 2020 Jan 23;10:3124. doi: 10.3389/fmicb.2019.03124. eCollection 2019.

Abstract

The section ( species group) represents a diverse group of saprotroph, human allergens, and plant pathogens. taxonomy has benefited from recent phylogenetic revision but the basis of differentiation between major phylogenetic clades within the group is not yet understood. Furthermore, genomic resources have been limited for the study of host-specific pathotypes. We report near complete genomes of the apple and Asian pear pathotypes as well as draft assemblies for a further 10 isolates representing and lineages. These assemblies provide the first insights into differentiation of these taxa as well as allowing the description of effector and non-effector profiles of apple and pear conditionally dispensable chromosomes (CDCs). We define the phylogenetic relationship between the isolates sequenced in this study and a further 23 spp. based on available genomes. We determine which of these genomes represent MAT1-1-1 or MAT1-2-1 idiomorphs and designate host-specific pathotypes. We show for the first time that the apple pathotype is polyphyletic, present in both the and lineages. Furthermore, we profile a wider set of 89 isolates for both mating type idiomorphs and toxin gene markers. Mating-type distribution indicated that gene flow has occurred since the formation of and lineages. We also developed primers designed to , a gene from the apple pathotype toxin gene cluster with homologs in all tested pathotypes. These primers allow identification and differentiation of apple, pear, and strawberry pathotypes, providing new tools for pathogen diagnostics.

摘要

该类群(物种组)包含多种腐生菌、人类过敏原和植物病原体。分类学受益于近期的系统发育修订,但该类群内主要系统发育分支之间的分化基础尚不清楚。此外,用于研究宿主特异性致病型的基因组资源有限。我们报告了苹果和亚洲梨致病型的近乎完整的基因组,以及另外10个代表不同谱系的分离株的草图组装。这些组装首次揭示了这些分类群的分化情况,并有助于描述苹果和梨的条件性可 dispensable 染色体(CDC)的效应子和非效应子谱。我们根据现有基因组确定了本研究中测序的分离株与另外23个种之间的系统发育关系。我们确定这些基因组中哪些代表MAT1-1-1或MAT1-2-1特异性形态,并指定宿主特异性致病型。我们首次表明苹果致病型是多系的,存在于两个谱系中。此外,我们对89个分离株的更广泛集合进行了交配型特异性形态和毒素基因标记分析。交配型分布表明,自两个谱系形成以来发生了基因流动。我们还开发了针对苹果致病型毒素基因簇中一个基因的引物,该基因在所有测试的致病型中都有同源物。这些引物可用于鉴定和区分苹果、梨和草莓致病型,为病原体诊断提供了新工具。 (注:原文中“conditionally dispensable chromosomes”直译为“条件性可 dispensable 染色体”,“dispensable”可能是特定术语,此处保留英文便于理解,若有更准确的专业术语可进一步完善;“MAT1-1-1”和“MAT1-2-1”等为特定基因形态术语,保留英文。)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4706/6989435/5723edf2a199/fmicb-10-03124-g001.jpg

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