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Comparative Genomics of Pathogens Causing Brown Spot Disease of Tobacco: Alternaria longipes and Alternaria alternata

机译:引起烟草褐斑病的病原体的比较基因组学:长链格孢和链格孢

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摘要

The genus Alternaria is a group of infectious/contagious pathogenic fungi that not only invade a wide range of crops but also induce severe allergic reactions in a part of the human population. In this study, two strains Alternaria longipes cx1 and Alternaria alternata cx2 were isolated from different brown spot lesions on infected tobacco leaves. Their complete genomes were sequenced, de novo assembled, and comparatively analyzed. Phylogenetic analysis revealed that A. longipes cx1 and A. alternata cx2 diverged 3.3 million years ago, indicating a recent event of speciation. Seventeen non-ribosomal peptide synthetase (NRPS) genes and 13 polyketide synthase (PKS) genes in A. longipes cx1 and 13 NRPS genes and 12 PKS genes in A. alternata cx2 were identified in these two strains. Some of these genes were predicted to participate in the synthesis of non-host specific toxins (non-HSTs), such as tenuazonic acid (TeA), alternariol (AOH) and alternariol monomethyl ether (AME). By comparative genome analysis, we uncovered that A. longipes cx1 had more genes putatively involved in pathogen-plant interaction, more carbohydrate-degrading enzymes and more secreted proteins than A. alternata cx2. In summary, our results demonstrate the genomic distinction between A. longipes cx1 and A. altenata cx2. They will not only improve the understanding of the phylogenetic relationship among genus Alternaria, but more importantly provide valuable genomic resources for the investigation of plant-pathogen interaction.
机译:交链孢菌属是一组传染性/传染性致病真菌,不仅侵染多种农作物,而且在一部分人口中引起严重的过敏反应。在这项研究中,从受感染的烟叶上不同的褐斑病病害中分离出了两种菌株,即长链格孢链霉菌cx1和链格孢链霉菌cx2。对它们的完整基因组进行测序,重新组装并进行比较分析。系统发育分析表明,A。longipes cx1和A. alternata cx2在330万年前发生了分化,表明最近发生了物种形成事件。在这两个菌株中鉴定出长曲霉cx1中的17个非核糖体肽合成酶(NRPS)基因和13个聚酮化合物合酶(PKS)基因,以及交链孢霉cx2中的13个NRPS基因和12个PKS基因。预测这些基因中的一些会参与非宿主特异性毒素(non-HSTs)的合成,例如Tenuazonic酸(TeA),Alternariol(AOH)和Alternariol单甲醚(AME)。通过比较的基因组分析,我们发现长双歧杆菌cx1可能比病原菌cx2具有更多的基因参与病原体-植物相互作用,更多的碳水化合物降解酶和更多的分泌蛋白。总而言之,我们的结果证明了 A 之间的基因组差异。 longipes cx1和 A altenata cx2。它们不仅将增进人们对 Alternaria 属的系统发育关系的了解,而且更重要的是为研究植物与病原体的相互作用提供有价值的基因组资源。

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