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北极红点鲑耐盐能力的转录组学研究:不同 QTL 基因型间基因表达谱的比较。

Transcriptomics of salinity tolerance capacity in Arctic charr (Salvelinus alpinus): a comparison of gene expression profiles between divergent QTL genotypes.

机构信息

Department of Integrative Biology, University of Guelph, Guelph, Ontario, Canada.

出版信息

Physiol Genomics. 2014 Feb 15;46(4):123-37. doi: 10.1152/physiolgenomics.00105.2013. Epub 2013 Dec 24.

DOI:10.1152/physiolgenomics.00105.2013
PMID:24368751
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3921346/
Abstract

Osmoregulatory capabilities have played an important role in the evolution, dispersal, and diversification of vertebrates. To better understand the genetic architecture of hypo-osmoregulation in fishes and to determine which genes and biological processes affect intraspecific variation in salinity tolerance, we used mRNA sequence libraries from Arctic charr gill tissue to compare gene expression profiles in fish exhibiting divergent salinity tolerance quantitative trait locus (QTL) genotypes. We compared differentially expressed genes with QTL positions to gain insight about the nature of the underlying polymorphisms and examined gene expression within the context of genome organization to gain insight about the evolution of hypo-osmoregulation in fishes. mRNA sequencing of 18 gill tissue libraries produced 417 million reads, and the final reduced de novo transcriptome assembly consisted of 92,543 contigs. Families contained a similar number of differentially expressed contigs between high and low salinity tolerance capacity groups, and log2 expression ratios ranged from 10.4 to -8.6. We found that intraspecific variation in salinity tolerance capacity correlated with differential expression of immune response genes. Some differentially expressed genes formed clusters along linkage groups. Most clusters comprised gene pairs, though clusters of three, four, and eight genes were also observed. We postulated that conserved synteny of gene clusters on multiple ancestral and teleost chromosomes may have been preserved via purifying selection. Colocalization of QTL with differentially expressed genes suggests that polymorphisms in cis-regulatory elements are part of a majority of QTL.

摘要

渗透调节能力在脊椎动物的进化、扩散和多样化中发挥了重要作用。为了更好地了解鱼类低渗调节的遗传结构,并确定哪些基因和生物过程影响盐度耐受性的种内变异,我们使用来自北极红点鲑鳃组织的 mRNA 序列文库,比较了表现出不同盐度耐受性数量性状基因座(QTL)基因型的鱼类的基因表达谱。我们将差异表达基因与 QTL 位置进行了比较,以深入了解潜在多态性的性质,并在基因组组织的背景下检查了基因表达,以深入了解鱼类低渗调节的进化。对 18 个鳃组织文库的 mRNA 测序产生了 4.17 亿个读数,最终简化的从头转录组组装由 92543 个连续体组成。高盐度和低盐度耐受能力组之间的差异表达连续体家族数量相似,对数 2 表达比范围从 10.4 到-8.6。我们发现,盐度耐受能力的种内变异与免疫反应基因的差异表达相关。一些差异表达基因沿着连锁群形成簇。大多数簇由基因对组成,尽管也观察到三个、四个和八个基因的簇。我们推测,多个祖先和硬骨鱼染色体上基因簇的保守同线性可能是通过纯化选择保存下来的。QTL 与差异表达基因的共定位表明,顺式调控元件中的多态性是大多数 QTL 的一部分。