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Different Transcriptomic Responses to Thermal Stress in Heat-Tolerant and Heat-Sensitive Pacific Abalones Indicated by Cardiac Performance

机译:耐心和热敏太平洋鲍鱼对热应激的不同转录组反应其心脏表现表明

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摘要

The Pacific abalone Haliotis discus hannai is one of the most economically important mollusks in China. Even though it has been farmed in southern China for almost 20 years, summer mortality remains the most challengeable problem for Pacific abalone aquaculture recently. Here, we determined the different heat tolerance ability for five selective lines of H. discus hannai by measuring the cardiac performance and Arrhenius breakpoint temperature (ABT). The Red line (RL) and Yangxia line (YL) were determined as the most heat-sensitive and most heat-tolerant line, respectively. Heart rates for RL were significantly lower than those of the YL at the same temperature (p < 0.05). The differentially expressed genes (DEGs), which were enriched in several pathways including cardiac muscle contraction, glutathione metabolism and oxidative phosphorylation, were identified between RL and YL at control temperature (20°C) and heat stress temperature (28.5°C, the ABT of the RL) by RNA-seq method. In the RL, 3370 DEGs were identified between the control and the heat-stress temperature, while only 1351 DEGs were identified in YL between these two temperature tests. Most of these DEGs were enriched in the pathways such as protein processing in endoplasmic reticulum, nucleotide binding and oligomerization domain (NOD) like receptor signaling, and ubiquitin mediated proteolysis. Notably, the most heat-tolerant line YL used an effective heat-protection strategy based on moderate transcriptional changes and regulation on the expression of key genes.
机译:太平洋鲍鱼鲍氏鲍氏鲍鱼是中国经济上最重要的软体动物之一。尽管已经在中国南部养殖了近20年,但夏季死亡率仍然是最近太平洋鲍鱼养殖面临的最大挑战。在这里,我们通过测量心脏性能和Arrhenius断点温度(ABT),确定了五个选择性的H. discus hannai品系的耐热能力。红线(RL)和洋霞线(YL)分别被确定为最热敏和最耐热的线。在相同温度下,RL的心率明显低于YL(p <0.05)。在控制温度(20°C)和热应激温度(28.5°C,ABT)下,RL和YL之间鉴定到差异表达基因(DEGs),其在心肌收缩,谷胱甘肽代谢和氧化磷酸化等多种途径中富集。通过RNA-seq方法测定RL)。在RL中,在对照和热应力温度之间鉴定出3370个DEG,而在这两个温度试验之间,在YL中仅鉴定出1351个DEG。这些DEG中的大多数富含以下途径,例如内质网中的蛋白质加工,核苷酸结合和寡聚化域(NOD)(如受体信号传导)以及泛素介导的蛋白水解。值得注意的是,最耐高温的品系YL使用了有效的热保护策略,该策略基于适度的转录变化和对关键基因表达的调控。

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