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Transcriptional response of the heat shock gene hsp70 aligns with differences in stress susceptibility of shallow-water corals from the Mediterranean Sea

机译:热休克基因hsp70的转录反应与来自地中海的浅水珊瑚的应力敏感性差异一致

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Shallow-water corals of the Mediterranean Sea are facing a dramatic increase in water temperature due to climate change, predicted to increase the frequency of bleaching and mass mortality events. However, supposedly not all corals are affected equally, as they show differences in stress susceptibility, as suggested by physiological outputs of corals along temperature gradients and under controlled conditions in terms of reproduction, demography, growth, calcification, and photosynthetic efficiency. In this study, gene expression and induction of a 70-kDa heat shock protein (HSP70) was analyzed in five common shallow-water hard corals in the Mediterranean Sea, namelyAstroides calycularis,Balanophyllia europaea,Caryophyllia inornata, Cladocora caespitosa,andLeptopsammia pruvoti.The main aim was to assess the contribution of this evolutionary conserved cytoprotective mechanism to the physiological plasticity of these species that possess different growth modes (solitaryvscolonial) and trophic strategies (zooxanthellatevsazooxanthellate). Using quantitative real-time PCR,in situ hsp70baseline levels and expression profiles after a heat-shock exposure were assessed.Levels ofhsp70and heat stress induction were higher in zooxanthellate than in azooxanthellate species, and different heat stress transcriptional profiles were observed between colonial and solitary zooxanthellate corals. On the whole, thehsp70transcriptional response to heat stress aligns with stress susceptibility of the species and suggests a contribution of trophic strategy and morphology in shaping coral resilience to stress. Understanding these molecular processes may contribute to assess the potential effects and relative resilience of Mediterranean corals under climate change.
机译:由于气候变化,地中海的浅水珊瑚正面临着水温急剧上升的趋势,预计这将增加漂白现象和大规模死亡事件的发生。但是,据推测并非所有珊瑚都受到同等的影响,因为它们表现出不同的胁迫敏感性,这是沿着温度梯度并在繁殖,人口统计学,生长,钙化和光合作用效率方面处于受控条件下的珊瑚生理输出所表明的。在这项研究中,在地中海的五个常见浅水硬珊瑚中分析了70 kDa热激蛋白(HSP70)的基因表达和诱导,包括Astroides calycularis,Balanophyllia europaea,Caryophyllia inornata,Cladocora caespitosa和Leptopsammia pruvoti。主要目的是评估这种进化保守的细胞保护机制对这些具有不同生长方式(单独粘膜)和营养策略(zooxanthellatevsazooxanthellate)的物种的生理可塑性的贡献。使用定量实时PCR,评估了热休克暴露后原位hsp70的基线水平和表达谱。虫黄体中的hsp70和热应激诱导水平高于偶氮黄体中的物种,并且在结肠和孤虫黄体之间观察到了不同的热胁迫转录谱。珊瑚。总体而言,热应激的hsp70转录反应与该物种的应激敏感性一致,并暗示了营养策略和形态对塑造珊瑚对压力的抵抗力的贡献。了解这些分子过程可能有助于评估气候变化下地中海珊瑚的潜在影响和相对复原力。

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