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首页> 外文期刊>Scientific reports. >Physiological response and microRNA expression profiles in head kidney of genetically improved farmed tilapia (GIFT, Oreochromis niloticus ) exposed to acute cold stress
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Physiological response and microRNA expression profiles in head kidney of genetically improved farmed tilapia (GIFT, Oreochromis niloticus ) exposed to acute cold stress

机译:基因改良养殖罗非鱼(GIFT,尼罗罗非鱼)暴露于急性冷胁迫下的头部肾脏的生理响应和microRNA表达谱

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Cold stress has a serious impact on the overwintering survival and yield of genetically improved farmed tilapia (GIFT, Oreochromis niloticus). Understanding the physiological and molecular regulation mechanisms of low-temperature adaptation is necessary to help breed new tolerant strains. The semi-lethal low temperature of juvenile GIFT at 96?h was determined as 9.4?°C. We constructed and sequenced two small RNA libraries from head kidney tissues, one for the control (CO) group and one for the 9.4?°C-stressed (LTS) group, and identified 1736 and 1481 known microRNAs (miRNAs), and 164 and 152 novel miRNAs in the CO and LTS libraries, respectively. We verify the expression of nine up-regulated miRNAs and eight down-regulation miRNAs by qRT-PCR, and found their expression patterns were consistent with the sequencing results. We found that cold stress may have produced dysregulation of free radical and lipid metabolism, decreased superoxide dismutase activity, reduced respiratory burst and phagocytic activity of macrophages, increased malondialdehyde content, and adversely affected the physiological adaptation of GIFT, eventually leading to death. This study revealed interactions among miRNAs and signal regulated pathways in GIFT under cold stress that may help to understand the pathways involved in cold resistance.
机译:冷胁迫对转基因罗非鱼(GIFT,尼奥罗非鱼)的越冬存活率和产量产生严重影响。了解低温适应的生理和分子调节机制对于帮助培育新的耐性菌株是必要的。少年GIFT在96?h的半致死低温确定为9.4?C。我们从头肾组织中构建了两个小RNA库并对其进行了测序,一个用于对照组(CO)组,一个用于9.4?C应激(LTS)组,并鉴定了1736和1481个已知的microRNA(miRNA),以及164和CO和LTS文库中分别有152个新颖的miRNA。我们通过qRT-PCR验证了9个上调的miRNA和8个下调的miRNA的表达,发现它们的表达模式与测序结果一致。我们发现冷应激可能会导致自由基和脂质代谢失调,超氧化物歧化酶活性降低,巨噬细胞呼吸爆发和吞噬活性降低,丙二醛含量增加,并对GIFT的生理适应性产生不利影响,最终导致死亡。这项研究揭示了低温胁迫下GIFT中miRNA与信号调节途径之间的相互作用,这可能有助于了解抗寒性相关的途径。

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