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Gene expression profiles during short-term heat stress in the red sea coral Stylophora pistillata

机译:红海珊瑚Stylophora pistillata短期热应激期间的基因表达谱

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During the past several decades, corals worldwide have been affected by severe bleaching events leading to wide-spread coral mortality triggered by global warming. The symbiotic Red Sea coral Stylophora pistillata from the Gulf of Eilat is considered an opportunistic r' strategist. It can thrive in relatively unstable environments and is considered a stress-tolerant species. Here, we used a S. pistillata custom microarray to examine gene expression patterns and cellular pathways during short-term (13-day) heat stress. The results allowed us to identify a two-step reaction to heat stress, which intensified significantly as the temperature was raised to a 32 degrees C threshold, beyond which, coping strategies failed at 34 degrees C. We identified potential early warning genes' and severe heat-related genes'. Our findings suggest that during short-term heat stress, S. pistillata may divert cellular energy into mechanisms such as the ER-unfolded protein response (UPR) and ER-associated degradation (ERAD) at the expense of growth and biomineralization processes in an effort to survive and subsequently recover from the stress. We suggest a mechanistic theory for the heat stress responses that may explain the success of some species which can thrive under a wider range of temperatures relative to others.
机译:在过去的几十年中,全世界的珊瑚受到严重的漂白事件的影响,导致全球变暖引发的广泛的珊瑚死亡。来自埃拉特湾的共生红海珊瑚Stylophora pistillata被认为是机会主义的战略家。它可以在相对不稳定的环境中繁衍生息,被认为是一种耐压力的物种。在这里,我们使用S. pistillata定制微阵列来检查短期(13天)热应激期间的基因表达模式和细胞途径。结果使我们能够确定对热应激的两步反应,随着温度升高到32摄氏度阈值,反应显着增强,超过此阈值,应对策略在34摄氏度下失败。我们发现了潜在的预警基因和严重的预警基因。与热有关的基因。我们的发现表明,在短期热应激期间,S。pistillata可能会将细胞能量转移到诸如ER未折叠蛋白反应(UPR)和ER相关降解(ERAD)之类的机制中,但会以牺牲生长和生物矿化过程为代价生存并随后从压力中恢复过来。我们提出了一种针对热应力反应的机制理论,该理论可以解释某些物种的成功,这些物种可以在相对于其他物种更宽的温度范围内繁衍。

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