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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Adaptive abilities of the Mediterranean red coral Corallium rubrum in a heterogeneous and changing environment: from population to functional genetics
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Adaptive abilities of the Mediterranean red coral Corallium rubrum in a heterogeneous and changing environment: from population to functional genetics

机译:地中海红珊瑚珊瑚红豆在异质多变的环境中的适应能力:从种群到功能遗传学

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摘要

Mediterranean benthic ecosystems have been deeply impacted by thermal anomalies during the last decades. Adaptive capacities for marine species facing climate change can include individual acclimatization (during the individual life-span) and genetic selection (considered at the population level). The Mediterranean red coral, Corallium rubrum, is well suited to study adaptive evolution in heterogeneous environment. This is a sessile species, which inhabits contrasted environments with a strong genetic structure, and differential responses to thermal stress between populations. This study proposes an integrative study of the adaptive response of C. rubrum to thermal stress. To understand the underlying mechanisms of thermal adaptation in this species, we studied three populations of C rubrum from different depths (5 m, 20 m and 40 m depths) and therefore different thermal regimes in the same area. We first surveyed in situ the thermal environment and the corresponding stress levels at the different depths studied here. Then we submitted red coral colonies to different heat shocks in aquaria that mimicked in situ stresses (common garden conditions). We measured the expression levels of several candidate genes. Heat shock protein 70 (HSP 70) showed significant differences of expression depending on the depth of origin of the individuals and of their thermal history. Based on a complementary analysis of genetic structure, our study shows the evolution of a differential response at a local scale which might be explained by local adaptation or acclimatization. Our results also underline the trade-off between fitness and potential deleterious consequences linked to heat stress response. It also strongly emphasizes the conservation value of populations living at the edge of the species' range, as they represent an irreplaceable genetic pool for evolutionary rescue.
机译:在过去的几十年中,地中海底栖生态系统受到热异常的严重影响。应对气候变化的海洋物种的适应能力可包括个体适应(在个体寿命期间)和遗传选择(在种群水平上考虑)。地中海红珊瑚Corallium rubrum非常适合研究异质环境中的适应性进化。这是一种无草种,栖息在具有强壮遗传结构的相反环境中,并且种群之间对热应激的反应不同。这项研究提出了综合研究红毛衣藻对热胁迫的适应性反应。为了了解该物种热适应的潜在机制,我们研究了三个不同深度(5 m,20 m和40 m深度)的红景天种群,因此研究了同一地区的不同热状况。我们首先在这里研究了不同深度的原位热环境和相应的应力水平。然后,我们将红珊瑚菌落置于模仿原位压力(常见的花园条件)的水族馆中的不同热冲击下。我们测量了几种候选基因的表达水平。热休克蛋白70(HSP 70)表现出明显的差异,这取决于个体的起源深度及其热病史。基于对遗传结构的补充分析,我们的研究显示了局部反应差异反应的演变,这可以通过局部适应或适应来解释。我们的结果还强调了适应性和与热应激反应相关的潜在有害后果之间的权衡。它还强烈强调了生活在物种范围边缘的种群的保护价值,因为它们代表了进化拯救的不可替代的遗传库。

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  • 作者单位

    Aix-Marseille Universite, CNRS, 1RD, 1MBE UMR 7263, Rue de la Batterie des Lions 13007, Marseille, France;

    Institut Pytheas UMS 3470, Rue de la Batterie des Lions 13007, Marseille, France;

    Aix-Marseille Universite, CNRS, 1RD, 1MBE UMR 7263, Rue de la Batterie des Lions 13007, Marseille, France,Institut de Ciendes del Mar CS1C Passeig Maritim de la Barceloneta 37-49, 08003 Barcelona, Spain,CIMAR/CI1MAR, Centro Merdisciplinar de Investigacao Marinha e Ambiental, Departamento de Biologia, Faculdade de Ciencias, Universidade do Porto, Porto, Portugal;

    Aix-Marseille Universite, CNRS, 1RD, 1MBE UMR 7263, Rue de la Batterie des Lions 13007, Marseille, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adaptation; Corallium rubrum; Heat shock proteins; Marginal population; Sea warming; Transcriptomic;

    机译:适应;红珊瑚热激蛋白;边缘人口;海洋变暖;转录组学;

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