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Genome-Wide Genotype-Expression Relationships Reveal Both Copy Number and Single Nucleotide Differentiation Contribute to Differential Gene Expression between Stickleback Ecotypes

机译:基因组范围内的基因型表达关系揭示了拷贝数和单核苷酸分化都有助于棘背型生态型之间的差异基因表达。

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摘要

Repeated and independent emergence of trait divergence that matches habitat differences is a sign of parallel evolution by natural selection. Yet, the molecular underpinnings that are targeted by adaptive evolution often remain elusive. We investigate this question by combining genome-wide analyses of copy number variants (CNVs), single nucleotide polymorphisms (SNPs), and gene expression across four pairs of lake and river populations of the three-spined stickleback (Gasterosteus aculeatus). We tested whether CNVs that span entire genes and SNPs occurring in putative cis-regulatory regions contribute to gene expression differences between sticklebacks from lake and river origins. We found 135 gene CNVs that showed a significant positive association between gene copy number and gene expression, suggesting that CNVs result in dosage effects that can fuel phenotypic variation and serve as substrates for habitat-specific selection. Copy number differentiation between lake and river sticklebacks also contributed to expression differences of two immune-related genes in immune tissues, cathepsin A and GIMAP7. In addition, we identified SNPs in cis-regulatory regions (eSNPs) associated with the expression of 1,865 genes, including one eSNP upstream of a carboxypeptidase gene where both the SNP alleles differentiated and the gene was differentially expressed between lake and river populations. Our study highlights two types of mutations as important sources of genetic variation involved in the evolution of gene expression and in potentially facilitating repeated adaptation to novel environments.
机译:与生境差异相匹配的性状分歧的反复和独立出现是自然选择平行进化的标志。然而,适应性进化所针对的分子基础常常仍然难以捉摸。我们通过结合全基因组范围内的拷贝数变异(CNV),单核苷酸多态性(SNP)和基因表达跨三对棘背back(Gasterosteus aculeatus)的四对湖泊和河流种群的调查来研究这个问题。我们测试了跨越整个基因的CNV和在假定的顺式调控区域中发生的SNP是否有助于从湖泊和河流起源的stick回之间的基因表达差异。我们发现了135个基因CNV,它们在基因拷贝数和基因表达之间显示出显着的正相关性,这表明CNV导致剂量效应,可加剧表型变异并充当生境特异性选择的底物。湖泊和河流的le背之间的拷贝数差异也导致免疫组织中的两个免疫相关基因组织蛋白酶A和GIMAP7的表达差异。此外,我们在与1865个基因的表达相关的顺式调控区(eSNPs)中鉴定了SNP,包括一个羧肽酶基因上游的一个eSNP,其中SNP等位基因已分化且该基因在湖泊和河流种群之间差异表达。我们的研究突出了两种类型的突变,它们是遗传变异的重要来源,而遗传变异涉及基因表达的演化以及潜在地促进对新环境的反复适应。

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