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Plasticity and trade-offs in physiological traits of intertidal mussels subjected to freshwater-induced environmental variation

机译:淡水引起的环境变化对潮间贻贝生理特性的可塑性和取舍

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ABSTRACT: Environmental gradients play an important role in shaping geographic variability in coastal marine populations. Thus, the ability of organisms to cope with these changes will depend on their potential to acclimatize, or adapt, to these new environmental conditions. We investigated the spatial variability in biological responses shown by Perumytilus purpuratus mussels collected from 2 intertidal areas experiencing contrasting freshwater input influences (river-influenced vs. marine conditions). To highlight the role of plasticity and adaptive potential in biological responses, we performed a reciprocal-transplant experiment and measured relevant phenotypic traits including mortality, growth, calcification, metabolism, and chemical composition of the shell periostracum. We determined that mussels exposed to river-influenced conditions had increased metabolic rates and reduced growth rates, as compared to mussels experiencing marine conditions (p 0.05). While the energy investment strategies of the 2 local populations resulted in similar net calcification rates, these rates decreased significantly when mussels were transplanted to the river-influenced site. Stressful conditions at the river-influenced site were evidenced by decreased survivorship across treatments. Freshwater inputs modify the organic composition of the shell periostracum through a significant reduction in polysaccharides. Although our field experiment did not identify specific environmental factors underlying these contrasting phenotypic changes, the results imply that plasticity plays a strong role when P. purpuratus is exposed to some combination of natural (e.g. salinity) and anthropogenic influences (e.g. pollution), and that the lack of exposure to freshwater may promote less tolerant mussels with greater potential for local adaptation.
机译:摘要:环境梯度在塑造沿海海洋种群的地理变异性方面发挥着重要作用。因此,生物体应对这些变化的能力将取决于它们适应或适应这些新环境条件的潜力。我们调查了从2个潮间带采集的淡水鲈(Perumytilus purpuratus )贻贝显示的生物学响应的空间变异性,这些潮间带受到淡水输入影响的对比(河流影响与海洋状况)。为了突出可塑性和适应性潜力在生物反应中的作用,我们进行了一次倒植实验,并测量了相关表型特征,包括死亡率,生长,钙化,新陈代谢以及壳骨膜的化学成分。我们确定,与经历海洋条件的贻贝相比,暴露于河流环境的贻贝具有更高的代谢率和降低的生长速率(p <0.05)。尽管两个当地居民的能源投资策略产生了相似的净钙化率,但是当贻贝被移植到受河水影响的地点时,这些比率大大降低。各种处理方法的存活率降低证明了在河流影响地区的压力状况。淡水输入通过显着减少多糖来改变壳骨膜的有机组成。尽管我们的现场实验并未发现这些相反的表型变化的特定环境因素,但结果表明,当 P时,可塑性起着重要作用。紫癜暴露于自然(例如盐度)和人为影响(例如污染)的某种组合下,缺乏淡水可能会导致耐受性较弱的贻贝具有更大的局部适应潜力。

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