首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >De Novo Assembly and Annotation of the Transcriptome of the Agricultural Weed Ipomoea purpurea Uncovers Gene Expression Changes Associated with Herbicide Resistance
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De Novo Assembly and Annotation of the Transcriptome of the Agricultural Weed Ipomoea purpurea Uncovers Gene Expression Changes Associated with Herbicide Resistance

机译:从头大会和农业杂草紫菜转录组的批注注释揭示了除草剂抗性相关的基因表达变化

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摘要

Human-mediated selection can lead to rapid evolution in very short time scales, and the evolution of herbicide resistance in agricultural weeds is an excellent example of this phenomenon. The common morning glory, Ipomoea purpurea, is resistant to the herbicide glyphosate, but genetic investigations of this trait have been hampered by the lack of genomic resources for this species. Here, we present the annotated transcriptome of the common morning glory, Ipomoea purpurea, along with an examination of whole genome expression profiling to assess potential gene expression differences between three artificially selected herbicide resistant lines and three susceptible lines. The assembled Ipomoea transcriptome reported in this work contains 65,459 assembled transcripts, ~28,000 of which were functionally annotated by assignment to Gene Ontology categories. Our RNA-seq survey using this reference transcriptome identified 19 differentially expressed genes associated with resistance—one of which, a cytochrome P450, belongs to a large plant family of genes involved in xenobiotic detoxification. The differentially expressed genes also broadly implicated receptor-like kinases, which were down-regulated in the resistant lines, and other growth and defense genes, which were up-regulated in resistant lines. Interestingly, the target of glyphosate—EPSP synthase—was not overexpressed in the resistant Ipomoea lines as in other glyphosate resistant weeds. Overall, this work identifies potential candidate resistance loci for future investigations and dramatically increases genomic resources for this species. The assembled transcriptome presented herein will also provide a valuable resource to the Ipomoea community, as well as to those interested in utilizing the close relationship between the Convolvulaceae and the Solanaceae for phylogenetic and comparative genomics examinations.
机译:人为介导的选择可以在很短的时间内迅速演变,而农用杂草中除草剂抗性的演变就是这种现象的一个很好的例子。普通的牵牛花紫菜对除草剂草甘膦有抗性,但由于缺乏该物种的基因组资源,对该特性的遗传研究受到阻碍。在这里,我们介绍常见牵牛花,番薯(Ipomoea purpurea)的带注释的转录组,以及对全基因组表达谱的检查,以评估三个人工选择的除草剂抗性品系和三个易感品系之间的潜在基因表达差异。这项工作中报道的组装的番薯转录本包含65,459个组装的转录本,其中约28,000个通过对基因本体论类别的分配进行了功能注释。我们使用该参考转录组进行的RNA-seq调查确定了19个与抗性相关的差异表达基因-其中一个是细胞色素P450,属于与异源生物解毒有关的大型植物家族基因。差异表达的基因还广泛牵涉在抗性系中被下调的受体样激酶,以及在抗性系中被上调的其他生长和防御基因。有趣的是,草甘膦的靶标(EPSP合酶)并未像其他草甘膦抗性杂草一样在抗性番薯科中过表达。总的来说,这项工作确定了潜在的候选抗性基因座,以供将来研究,并大大增加了该物种的基因组资源。本文介绍的组装转录组还将为番薯科以及那些利用旋花科和茄科的紧密关系进行系统发育和比较基因组学检查的人提供宝贵的资源。

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