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Genetic Variation Underlying Protein Expression in Eggs of the Marine Mussel Mytilus edulis

机译:贻贝贻贝卵卵中蛋白质表达的遗传变异

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摘要

Study of the genetic basis of gene expression variation is central to attempts to understand the causes of evolutionary change. Although there are many transcriptomics studies estimating genetic variance and heritability in model organisms such as humans there is a lack of equivalent proteomics studies. In the present study, the heritability underlying egg protein expression was estimated in the marine mussel Mytilus. We believe this to be the first such measurement of genetic variation for gene expression in eggs of any organism. The study of eggs is important in evolutionary theory and life history analysis because maternal effects might have profound effects on the rate of evolution of offspring traits. Evidence is presented that the egg proteome varies significantly between individual females and that heritability of protein expression in mussel eggs is moderate to high suggesting abundant genetic variation on which natural selection might act. The study of the mussel egg proteome is also important because of the unusual system of mitochondrial DNA inheritance in mussels whereby different mitochondrial genomes are transmitted independently through female and male lineages (doubly uniparental inheritance). It is likely that the mechanism underlying this system involves the interaction of specific egg factors with sperm mitochondria following fertilization, and its elucidation might be advanced by study of the proteome in females having different progeny sex ratios. Putative identifications are presented here for egg proteins using MS/MS in Mytilus lines differing in sex ratio. Ontology terms relating to stress response and protein folding occur more frequently for proteins showing large expression differences between the lines. The distribution of ontology terms in mussel eggs was compared with those for previous mussel proteomics studies (using other tissues) and with mammal eggs. Significant differences were observed between mussel eggs and mussel tissues but not between the two types of eggs.
机译:对基因表达变异的遗传基础的研究对于了解进化变化的原因至关重要。尽管有许多转录组学研究估计人类等模型生物的遗传变异和遗传性,但仍缺乏等效的蛋白质组学研究。在本研究中,估计了贻贝Mytilus中卵蛋白表达的遗传力。我们相信这是对任何生物的卵中基因表达的遗传变异进行的此类测量的首次。卵的研究在进化论和生活史分析中具有重要意义,因为产妇效应可能对后代性状的进化速率产生深远影响。有证据表明,雌性蛋的蛋白质组差异很大,贻贝蛋中蛋白质表达的遗传力是中等到很高,表明自然选择可能起作用的丰富遗传变异。贻贝卵蛋白质组的研究也很重要,因为贻贝中的线粒体DNA遗传系统异常,从而不同的线粒体基因组通过雌性和雄性谱系独立传播(双重单亲遗传)。该系统的潜在机制可能涉及受精后特定卵子因子与精子线粒体的相互作用,其研究可能通过研究具有不同后代性别比的女性的蛋白质组来进一步阐明。此处介绍了在性别比不同的Mytilus品系中使用MS / MS对蛋蛋白进行的鉴定。与应激反应和蛋白质折叠有关的本体术语对于显示出品系之间的较大表达差异的蛋白质更为常见。将贻贝卵中的本体术语的分布与先前的贻贝蛋白质组学研究(使用其他组织)以及哺乳动物卵进行了比较。贻贝蛋和贻贝组织之间观察到显着差异,但两种蛋之间没有显着差异。

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