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首页> 外文期刊>Frontiers in Physiology >Changes of Ammonia-Metabolizing Enzyme Activity and Gene Expression of Two Strains in Shrimp Litopenaeus vannamei Under Ammonia Stress
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Changes of Ammonia-Metabolizing Enzyme Activity and Gene Expression of Two Strains in Shrimp Litopenaeus vannamei Under Ammonia Stress

机译:氨胁迫下对虾南美白对虾的氨代谢酶活性和两条菌株基因表达的变化

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Ammonia stress can inhibit the survival and growth, and even cause mortality of shrimp. In this study, ammonia-metabolizing enzyme activities and gene expression were compared between two strains of L. vannamei under different ammonia-N ( NH 4 + ) concentrations (3.4, 13.8, and 24.6 mg/L). The results showed that elevated ammonia concentrations mainly increased glutamine synthetase (GSase) activities while inhibiting transglutaminase (TGase) activities in the muscle of both strains. Thus, we concluded that L. vannamei could accelerate the synthesis of glutamine from glutamate and NH 4 + to alleviate ammonia stress. Compared with the muscle, the hepatopancreas plays a major role in ammonia stress and might be a target tissue to respond to the ammonia stress. Compared to the control group, the treatment of high ammonia concentrations reduced the hepatopancreas TGase ( TG ) gene expression and increased the gene expression rates of glutamate dehydrogenase-β ( GDH -β) and GSase ( GS ) in both the muscle and the hepatopancreas of the two strains ( p < 0.05). These genes ( GDH -β and GS ) in strain B were not only expressed earlier but also at levels higher than the expression range of strain A. At the gene level, strain B showed a more rapid and positive response than strain A. These data might help reveal the physiological responses mechanisms of shrimp adapt to ammonia stress and speed up the selective breeding process in L. vannamei .
机译:氨胁迫会抑制虾的生存和生长,甚至导致虾的死亡。在这项研究中,比较了在不同氨氮(NH 4 +)浓度(3.4、13.8和24.6 mg / L)的两个南美白对虾菌株中氨代谢酶的活性和基因表达。结果表明,升高的氨浓度主要增加了两种菌株的肌肉中的谷氨酰胺合成酶(GSase)活性,同时抑制了转谷氨酰胺酶(TGase)活性。因此,我们得出结论,南美白对虾可以促进谷氨酸和NH 4 +合成谷氨酰胺以减轻氨胁迫。与肌肉相比,肝胰腺在氨压力中起主要作用,并且可能是响应氨压力的目标组织。与对照组相比,高浓度氨水可降低大鼠肝脏和肝胰腺中肝胰腺TGase(TG)基因的表达,并提高谷氨酸脱氢酶β(GDH-β)和GSase(GS)的基因表达率。这两个菌株(p <0.05)。菌株B中的这些基因(GDH-β和GS)不仅表达较早,而且表达水平也高于菌株A的表达范围。在基因水平上,菌株B显示出比菌株A更快,更积极的应答。可能有助于揭示虾对氨胁迫的生理反应机制,并加快南美虾的选择性繁殖过程。

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