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Stress response and tolerance mechanisms of ammonia exposure based on transcriptomics and metabolomics in Litopenaeus vannamei

机译:基于转录组和代谢组学的南美白对虾的应激反应和氨暴露耐受机制

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Ammonia, one of the major limiting environment factors in aquaculture, may pose a threat to the shrimp growth, reproduction and survival. In this study, to understand molecular differences of transcriptomic and metabolomic responses and investigate the tolerance mechanisms underlying ammonia stress in Litopenaeus vannamei, ammonia -tolerant family (LV-AT) and ammonia-sensitive family (LV-AS) of these two extreme families were exposed to high-concentration (NH4Cl, 46 mg/L) ammonia for 24 h. The comparative transcriptome analysis between ammonia-treated and control (LV-C) groups revealed involvement of immune defense, cytoskeleton remodeling, antioxidative system and metabolic pathway in ammonia-stress response of L. vannamei. Likewise, metabolomics analysis showed that ammonia exposure could disturb amino acid metabolism, nucleotide metabolism and lipid metabolism, with metabolism related-genes changed according to RNA-seq analysis. The comparison of metabolite and transcript profiles between LV-AT and LV-AS indicated that LV-AT used the enhanced glycolysis and tricarboxylic acid (TCA) cycle strategies for energy supply and ammonia excretion to adapt high-concentration ammonia. Furthermore, some of genes involved in the detoxification and ammonia excretion were highly expressed in LV-AT. We speculate that the higher ability of ammonia excretion and detoxification and the accelerated energy metabolism for energy supplies might be the adaptive strategies for LV-AT relative to LV-AS after ammonia stress. Collectively, the combination of transcriptomics and metabolomics results will greatly contribute to incrementally understand the stress responses on ammonia exposure to L. vannamei and supply molecular level support for evaluating the environmental effects of ammonia on aquatic organisms. The results further constitute new sights on the potential molecular mechanisms of ammonia adaptive strategies in shrimps at the transcriptomics and metabolomics levels.
机译:氨是水产养殖的主要限制环境因素之一,可能对虾的生长,繁殖和生存构成威胁。在这项研究中,为了了解转录组和代谢组学应答的分子差异,并研究凡纳滨对虾中氨胁迫的耐受机制,这两个极端家族的耐氨性家族(LV-AT)和氨敏感家族(LV-AS)是暴露于高浓度(NH4Cl,46 mg / L)氨中24小时。氨水处理组和对照组(LV-C)之间的转录组比较分析显示,南美白对虾的氨胁迫反应中涉及免疫防御,细胞骨架重塑,抗氧化系统和代谢途径。同样,代谢组学分析表明,氨暴露可能会干扰氨基酸代谢,核苷酸代谢和脂质代谢,并且与代谢相关的基因会根据RNA-seq分析发生变化。 LV-AT和LV-AS的代谢产物和转录物谱的比较表明,LV-AT使用增强的糖酵解和三羧酸(TCA)循环策略来提供能量和排泄氨气以适应高浓度氨气。此外,一些参与排毒和氨气排泄的基因在LV-AT中高表达。我们推测,氨胁迫后,较高的氨解毒和排毒能力以及加速能量代谢的能量供应可能是LV-AT相对于LV-AS的适应策略。总体而言,转录组学和代谢组学研究结果的结合将极大地有助于逐步了解对南美白对虾氨暴露的应激反应,并为评估氨对水生生物的环境影响提供分子水平的支持。该结果进一步在转录组学和代谢组学水平上研究了虾对氨氮适应策略的潜在分子机制。

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