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首页> 外文期刊>BMC Genomics >Phylogenetic relationship between Australian Fusarium oxysporum isolates and resolving the species complex using the multispecies coalescent model
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Phylogenetic relationship between Australian Fusarium oxysporum isolates and resolving the species complex using the multispecies coalescent model

机译:澳大利亚镰刀虫区的系统发育关系,使用多层膨胀模型分辨物种复合物

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The Fusarium oxysporum species complex (FOSC) is a ubiquitous group of fungal species readily isolated from agroecosystem and natural ecosystem soils which includes important plant and human pathogens. Genetic relatedness within the complex has been studied by sequencing either the genes or the barcoding gene regions within those genes. Phylogenetic analyses have demonstrated a great deal of diversity which is reflected in the differing number of clades identified: three, five and eight. Genetic limitation within the species in the complex has been studied through Genealogical Concordance Phylogenetic Species Recognition (GCPSR) analyses with varying number of phylogenetic ‘species’ identified ranging from two to 21. Such differing views have continued to confuse users of these taxonomies. The phylogenetic relationships between Australian F. oxysporum isolates from both natural and agricultural ecosystems were determined using three datasets: whole genome, nuclear genes, and mitochondrial genome sequences. The phylogenies were concordant except for three isolates. There were three concordant clades from all the phylogenies suggesting similar evolutionary history for mitochondrial genome and nuclear genes for the isolates in these three clades. Applying a multispecies coalescent (MSC) model on the eight single copy nuclear protein coding genes from the nuclear gene dataset concluded that the three concordant clades correspond to three phylogenetic species within the FOSC. There was 100% posterior probability support for the formation of three species within the FOSC. This is the first report of using the MSC model to estimate species within the F. oxysporum species complex. The findings from this study were compared with previously published phylogenetics and species delimitation studies. Phylogenetic analyses using three different gene datasets from Australian F. oxysporum isolates have all supported the formation of three major clades which delineated into three species. Species 2 (Clade 3) may be called F. oxysporum as it contains the neotype for F. oxysporum.
机译:Fusarium oxysporum物种复合物(FOSC)是一种普遍存存的真菌物种,容易从农产物系统和天然生态系统土壤中分离出来,包括重要植物和人类病原体。通过在这些基因内测序基因或条形码基因区域来研究复合物内的遗传相关性。系统发育分析已经表现出大量的多样性,其反映在鉴定的不同分析中:三,五和八个。通过谱系的协调物种识别(GCPSR)分析,从两到21分的不同数量的系统发育“物种”分析研究了复合物中的物种内的遗传限制。这种不同意见继续混淆这些分类的用户。使用三个数据集测定来自天然和农业生态系统的澳大利亚F. oxysporum分离物的系统发育关系:全基因组,核基因和线粒体基因组序列。除了三个分离株外,该系统是一致的。所有文学发育者都有三个齐齐子的曲线,表明线粒体基因组和核基因的类似进化史,用于这三种蛹中的分离物。在核基因数据集中施加八种单拷贝核蛋白质编码基因的多层阳性(MSC)模型得出结论认为,三种一致性的曲线对应于FOSC中的三种系统发育物种。在FOSC中形成三种物种的100%后概率支持。这是使用MSC模型在F. oxysporum物种复合物中估计物种的第一个报告。将本研究的结果与先前公布的文学和物种划界研究进行了比较。来自澳大利亚F. oxysporum分离株的三种不同基因数据集的系统发育分析都支持形成三种划分为三种物种的三个主要枝条的形成。物种2(Clade 3)可以称为oxysporum,因为它含有F. oxysporum的新型。

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