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首页> 外文期刊>BMC Genomics >De novo characterization of the gene-rich transcriptomes of two color-polymorphic spiders, Theridion grallator and T. californicum (Araneae: Theridiidae), with special reference to pigment genes
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De novo characterization of the gene-rich transcriptomes of two color-polymorphic spiders, Theridion grallator and T. californicum (Araneae: Theridiidae), with special reference to pigment genes

机译:从头表征两个彩色多态蜘蛛Theridion grallator和T. californicum(Araneae:Theridiidae)的富含基因的转录组,并特别提及色素基因

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Background A number of spider species within the family Theridiidae exhibit a dramatic abdominal (opisthosomal) color polymorphism. The polymorphism is inherited in a broadly Mendelian fashion and in some species consists of dozens of discrete morphs that are convergent across taxa and populations. Few genomic resources exist for spiders. Here, as a first necessary step towards identifying the genetic basis for this trait we present the near complete transcriptomes of two species: the Hawaiian happy-face spider Theridion grallator and Theridion californicum. We mined the gene complement for pigment-pathway genes and examined differential expression (DE) between morphs that are unpatterned (plain yellow) and patterned (yellow with superimposed patches of red, white or very dark brown). Results By deep sequencing both RNA-seq and normalized cDNA libraries from pooled specimens of each species we were able to assemble a comprehensive gene set for both species that we estimate to be 98-99% complete. It is likely that these species express more than 20,000 protein-coding genes, perhaps 4.5% (ca. 870) of which might be unique to spiders. Mining for pigment-associated Drosophila melanogaster genes indicated the presence of all ommochrome pathway genes and most pteridine pathway genes and DE analyses further indicate a possible role for the pteridine pathway in theridiid color patterning. Conclusions Based upon our estimates, T. grallator and T. californicum express a large inventory of protein-coding genes. Our comprehensive assembly illustrates the continuing value of sequencing normalized cDNA libraries in addition to RNA-seq in order to generate a reference transcriptome for non-model species. The identification of pteridine-related genes and their possible involvement in color patterning is a novel finding in spiders and one that suggests a biochemical link between guanine deposits and the pigments exhibited by these species.
机译:背景技术Theridiidae科中的许多蜘蛛物种表现出戏剧性的腹部(阿胶体)颜色多态性。多态性以广泛的孟德尔遗传方式遗传,在某些物种中由数十个离散的形态组成,这些形态在整个分类单元和种群中汇聚。蜘蛛的基因组资源很少。在这里,作为确定该性状遗传基础的第一步,我们介绍了两个物种近乎完整的转录组:夏威夷笑脸蜘蛛Theridion放牧者和Theridion californicum。我们为色素通路基因挖掘了基因补体,并检查了无模式(普通黄色)和带模式(黄色的红色,白色或非常深棕色的叠加斑点)之间的差异表达(DE)。结果通过对来自每个物种的合并标本的RNA-seq和归一化cDNA文库进行深度测序,我们能够为这两个物种组装一个综合基因组,我们估计它们的完成率为98-99%。这些物种可能表达超过20,000个蛋白质编码基因,其中4.5%(大约870个)可能是蜘蛛特有的。与色素相关的果蝇黑腹果蝇基因的挖掘表明存在所有的全色素途径基因和大多数蝶啶途径基因,DE分析进一步表明了蝶啶途径在ridiidid模式中的可能作用。结论基于我们的估计,T。grallator和T. californicum表达了大量的蛋白质编码基因。我们全面的组装说明了除RNA-seq外,对归一化cDNA文库进行测序的持续价值,以便为非模型物种生成参考转录组。蝶啶相关基因的鉴定及其可能参与的颜色构图是蜘蛛中的一项新发现,这表明鸟嘌呤沉积物与这些物种显示的色素之间存在生化联系。

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