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{"title":"燕麦冠锈菌群体动态和毒力相关位点的基因组分析。","authors":"Tim C Hewitt, Eva C Henningsen, Danilo Pereira, Kerensa McElroy, Eric S Nazareno, Sheshanka Dugyala, Hoa Nguyen-Phuc, Feng Li, Marisa E Miller, Botma Visser, Zacharias A Pretorius, Willem H P Boshoff, Jana Sperschneider, Eva H Stukenbrock, Shahryar F Kianian, Peter N Dodds, Melania Figueroa","doi":"10.1094/MPMI-09-23-0126-FI","DOIUrl":null,"url":null,"abstract":"<p><p><i>Puccinia coronata</i> f. sp. <i>avenae</i> (<i>Pca</i>) is an important fungal pathogen causing crown rust that impacts oat production worldwide. Genetic resistance for crop protection against <i>Pca</i> is often overcome by the rapid virulence evolution of the pathogen. This study investigated the factors shaping adaptive evolution of <i>Pca</i> using pathogen populations from distinct geographic regions within the United States and South Africa. Phenotypic and genome-wide sequencing data of these diverse <i>Pca</i> collections, including 217 isolates, uncovered phylogenetic relationships and established distinct genetic composition between populations from northern and southern regions from the United States and South Africa. The population dynamics of <i>Pca</i> involve a bidirectional movement of inoculum between northern and southern regions of the United States and contributions from clonality and sexuality. The population from South Africa is solely clonal. A genome-wide association study (GWAS) employing a haplotype-resolved <i>Pca</i> reference genome was used to define 11 virulence-associated loci corresponding to 25 oat differential lines. These regions were screened to determine candidate <i>Avr</i> effector genes. Overall, the GWAS results allowed us to identify the underlying genetic factors controlling pathogen recognition in an oat differential set used in the United States to assign pathogen races (pathotypes). Key GWAS findings support complex genetic interactions in several oat lines, suggesting allelism among resistance genes or redundancy of genes included in the differential set, multiple resistance genes recognizing genetically linked <i>Avr</i> effector genes, or potentially epistatic relationships. A careful evaluation of the composition of the oat differential set accompanied by the development or implementation of molecular markers is recommended. [Formula: see text] Copyright © 2024 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license.</p>","PeriodicalId":19009,"journal":{"name":"Molecular Plant-microbe Interactions","volume":" ","pages":"290-303"},"PeriodicalIF":3.2000,"publicationDate":"2024-03-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Genome-Enabled Analysis of Population Dynamics and Virulence-Associated Loci in the Oat Crown Rust Fungus <i>Puccinia coronata</i> f. sp. <i>avenae</i>.\",\"authors\":\"Tim C Hewitt, Eva C Henningsen, Danilo Pereira, Kerensa McElroy, Eric S Nazareno, Sheshanka Dugyala, Hoa Nguyen-Phuc, Feng Li, Marisa E Miller, Botma Visser, Zacharias A Pretorius, Willem H P Boshoff, Jana Sperschneider, Eva H Stukenbrock, Shahryar F Kianian, Peter N Dodds, Melania Figueroa\",\"doi\":\"10.1094/MPMI-09-23-0126-FI\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p><i>Puccinia coronata</i> f. sp. <i>avenae</i> (<i>Pca</i>) is an important fungal pathogen causing crown rust that impacts oat production worldwide. Genetic resistance for crop protection against <i>Pca</i> is often overcome by the rapid virulence evolution of the pathogen. This study investigated the factors shaping adaptive evolution of <i>Pca</i> using pathogen populations from distinct geographic regions within the United States and South Africa. Phenotypic and genome-wide sequencing data of these diverse <i>Pca</i> collections, including 217 isolates, uncovered phylogenetic relationships and established distinct genetic composition between populations from northern and southern regions from the United States and South Africa. The population dynamics of <i>Pca</i> involve a bidirectional movement of inoculum between northern and southern regions of the United States and contributions from clonality and sexuality. The population from South Africa is solely clonal. A genome-wide association study (GWAS) employing a haplotype-resolved <i>Pca</i> reference genome was used to define 11 virulence-associated loci corresponding to 25 oat differential lines. These regions were screened to determine candidate <i>Avr</i> effector genes. Overall, the GWAS results allowed us to identify the underlying genetic factors controlling pathogen recognition in an oat differential set used in the United States to assign pathogen races (pathotypes). Key GWAS findings support complex genetic interactions in several oat lines, suggesting allelism among resistance genes or redundancy of genes included in the differential set, multiple resistance genes recognizing genetically linked <i>Avr</i> effector genes, or potentially epistatic relationships. A careful evaluation of the composition of the oat differential set accompanied by the development or implementation of molecular markers is recommended. [Formula: see text] Copyright © 2024 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license.</p>\",\"PeriodicalId\":19009,\"journal\":{\"name\":\"Molecular Plant-microbe Interactions\",\"volume\":\" \",\"pages\":\"290-303\"},\"PeriodicalIF\":3.2000,\"publicationDate\":\"2024-03-01\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Molecular Plant-microbe Interactions\",\"FirstCategoryId\":\"99\",\"ListUrlMain\":\"https://doi.org/10.1094/MPMI-09-23-0126-FI\",\"RegionNum\":3,\"RegionCategory\":\"生物学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"2024/3/21 0:00:00\",\"PubModel\":\"Epub\",\"JCR\":\"Q2\",\"JCRName\":\"BIOCHEMISTRY & MOLECULAR BIOLOGY\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Molecular Plant-microbe Interactions","FirstCategoryId":"99","ListUrlMain":"https://doi.org/10.1094/MPMI-09-23-0126-FI","RegionNum":3,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"2024/3/21 0:00:00","PubModel":"Epub","JCR":"Q2","JCRName":"BIOCHEMISTRY & MOLECULAR BIOLOGY","Score":null,"Total":0}
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