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Proteomic Comparison between Two Marine Snail Ecotypes Reveals Details about the Biochemistry of Adaptation

机译:两种海洋蜗牛生态型的蛋白质组学比较揭示了适应性生物化学的详细信息

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The proteomic changes occurring during speciation are fundamental to understand this process, though they have been rarely addressed until present. Therefore, we compared the proteome of two ecotypes (RB and SU) of the marine snail Littorina saxatilis, a case of sympatric incomplete speciation, originated as a byproduct of adaptation to distinct habitats. Thus, the RB ecotype is able to resist stresses of desiccation and temperature on the upper shore, whereas the SU ecotype defies strong physical disturbances due to wave action. Qualitative analyses of 2-DE gels demonstrated 21 proteins differentially expressed (1.4% of the proteome, 1.2% after considering type-I errors), while quantitative changes accounted for differences in 22 spots (16% of the proteome, 11% after considering type-l errors). These results suggest that adaptative phenotypic plasticity, natural selection, or both maintain these ecotypes in sympatry. Among the proteins identified by MS, we found that fructose-bisphosphate aldolase and arginine kinase were up-regulated in the SU ecotype, suggesting an enhancement of the level of energy available as ATP, in order to withstand its wave-exposed habitat.
机译:物种形成过程中发生的蛋白质组学变化是理解该过程的基础,尽管直到现在仍很少得到解决。因此,我们比较了海洋蜗牛Littorina saxatilis的两种生态型(RB和SU)的蛋白质组,这是同胞不完全物种形成的案例,起源于适应不同生境的副产品。因此,RB生态型能够抵抗上海岸的干旱和温度胁迫,而SU生态型则克服了由于波浪作用而引起的强烈的物理干扰。对2-DE凝胶的定性分析显示21种蛋白质差异表达(1.4%的蛋白质组,考虑I型错误后为1.2%),而定量变化占22个斑点的差异(16%的蛋白质组,考虑后为11%)。 -l错误)。这些结果表明,适应性表型可塑性,自然选择或两者都可以在共生中维持这些生态型。在通过MS鉴定的蛋白质中,我们发现SU生态型中的果糖二磷酸醛缩酶和精氨酸激酶上调,这表明ATP可以利用的能量水平有所提高,以承受其暴露于波浪的栖息地。

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