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Positive Selection within a Diatom Species Acts on Putative Protein Interactions and Transcriptional Regulation

机译:硅藻物种内的正选择作用于假定的蛋白质相互作用和转录调控。

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Diatoms are the most species-rich group of microalgae, and their contribution to marine primary production is important on a global scale. Diatoms can form dense blooms through rapid asexual reproduction; mutations acquired and propagated during blooms likely provide the genetic, and thus phenotypic, variability upon which natural selection may act. Positive selection was tested using genome and transcriptome-wide pair-wise comparisons of homologs in three genera of diatoms (Pseudo-nitzschia, Ditylum, and Thalassiosira) that represent decreasing phylogenetic distances. The signal of positive selection was greatest between two strains of Thalassiosira pseudonana. Further testing among seven strains of T. pseudonana yielded 809 candidate genes of positive selection, which are 7% of the protein-coding genes. Orphan genes and genes encoding protein-binding domains and transcriptional regulators were enriched within the set of positively selected genes relative to the genome as a whole. Positively selected genes were linked to the potential selective pressures of nutrient limitation and sea surface temperature based on analysis of gene expression profiles and identification of positively selected genes in subsets of strains from locations with similar environmental conditions. The identification of positively selected genes presents an opportunity to test new hypotheses in natural populations and the laboratory that integrate selected genotypes in T. pseudonana with their associated phenotypes and selective forces.
机译:硅藻是物种最丰富的微藻类,它们对海洋初级生产的贡献在全球范围内都很重要。硅藻可以通过无性繁殖迅速形成致密的花朵。在花期期间获得并传播的突变可能提供了自然选择可能起作用的遗传变异,因此也提供了表型变异。使用全基因组和转录组范围的成对成对比较测试了三个物种的硅藻(假奈茨菌属,Ditylum和Thalassiosira)的同源物,这些物种代表系统发生距离的降低。在两种拟南芥菌株之间,阳性选择的信号最大。在七个假单胞菌菌株中的进一步测试产生了809个阳性选择的候选基因,占蛋白质编码基因的7%。相对于整个基因组,孤儿基因和编码蛋白结合域的基因以及转录调节子富集在一组积极选择的基因中。基于基因表达谱分析和鉴定具有相似环境条件的菌株子集中阳性选择基因,阳性选择基因与养分限制和海面温度的潜在选择压力相关。阳性选择基因的鉴定为在自然种群中和实验室中测试新假说提供了机会,这些假说将假单胞菌中选定的基因型与其相关的表型和选择力整合在一起。

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