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Analysis of Gene Expression in an Inbred Line of Soft-Shell Clams (Mya arenaria) Displaying Growth Heterosis: Regulation of Structural Genes and the NOD2 Pathway

机译:分析显示生长杂种优势的软壳蛤(Mya arenaria)自交系中的基因表达:结构基因的调节和NOD2途径。

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摘要

Mya arenaria is a bivalve mollusk of commercial and economic importance, currently impacted by ocean warming, acidification, and invasive species. In order to inform studies on the growth of M. arenaria, we selected and inbred a population of soft-shell clams for a fast-growth phenotype. This population displayed significantly faster growth (p < 0.0001), as measured by 35.4% greater shell size. To assess the biological basis of this growth heterosis, we characterized the complete transcriptomes of six individuals and identified differentially expressed genes by RNAseq. Pathways differentially expressed included structural gene pathways. Also differentially expressed was the nucleotide-binding oligomerization domain 2 (NOD2) receptor pathway that contributes to determination of growth, immunity, apoptosis, and proliferation. NOD2 pathway members that were upregulated included a subset of isoforms of RIPK2 (mean 3.3-fold increase in expression), ERK/MAPK14 (3.8-fold), JNK/MAPK8 (4.1-fold), and NFκB (4.08-fold). These transcriptomes will be useful resources for both the aquaculture community and researchers with an interest in mollusks and growth heterosis.
机译:Mya arenaria是具有商业和经济重要性的双壳软体动物,目前受到海洋变暖,酸化和入侵物种的影响。为了为关于沙雷氏菌生长的研究提供信息,我们选择并自交了一种快速成长表型的软体蛤。该种群显示出显着更快的生长(p <0.0001),这是通过壳大小增加35.4%来衡量的。为了评估这种生长杂种优势的生物学基础,我们表征了六个个体的完整转录组,并通过RNAseq鉴定了差异表达的基因。差异表达的途径包括结构基因途径。还差异表达的是核苷酸结合寡聚域2(NOD2)受体途径,有助于确定生长,免疫,凋亡和增殖。上调的NOD2途径成员包括RIPK2(平均表达增加3.3倍),ERK / MAPK14(3.8倍),JNK / MAPK8(4.1倍)和NFκB(4.08倍)的亚型。这些转录组将对水产养殖界和对软体动物和生长杂种优势感兴趣的研究人员都是有用的资源。

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