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Analysis of differential gene expression in Litopenaeus vannamei under High salinity stress

机译:高盐度应力下Litopenaeus Vannamei差异基因表达的分析

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Litopenaeus vannamei has a salinity tolerance range of 0.5–78 ppt. In China, cultivation of L. vannamei in high salinity waters in the Circum-Bohai Region resulted in low survival rates and yields because high salinity has toxic effects on shrimp. Thus, identifying differential gene expression in different tissues of L. vannamei under high salinity stress would help revealing its salt tolerance mechanisms. In the present study, L. vannamei was cultivated under two salinity levels (34 and 58 ppt) for 90 days. Gill, muscle, and hepatopancreatic tissues were then extracted from the shrimp for transcriptome sequencing and quantitative real-time PCR, to analyze the differential expression of genes at the transcriptome level. The 1659 significantly differentially expressed genes comprised 436, 318, and 364 upregulated genes and 428, 317, and 156 downregulated genes in gill, hepatopancreatic, and muscle tissues, respectively. Higher differential expression was found in genes related to osmoregulation, ion transport, and antioxidation in gill tissue; immune defense, bacterial lysis, and apoptosis in hepatopancreatic tissue; and development and nutrient metabolism in muscle tissue. The results of this study can enrich the basic knowledge of shrimp stress biology, and provide reference for understanding the molecular mechanism of shrimp salt tolerance.
机译:Litopenaeus Vannamei具有0.5-78 ppt的盐度公差范围。在中国,在围绕渤海地区的高盐度水域培养L. Vannamei导致生存率低,产量低,因为高盐度对虾有毒性作用。因此,在高盐度应力下识别L.Vannamei的不同组织中的差异基因表达将有助于揭示其耐盐机制。在本研究中,L.Vannamei在两个盐度水平(34和58 ppt)下培养90天。然后从虾中从虾中提取鳃,肌肉和肝癌组织,用于转录组测序和定量实时PCR,以分析转录组水平在转录组水平的差异表达。 1659分别在鳃,肝癌和肌肉组织中显着表达了436,318和364个上调基因和428,317和156个下调基因。在与鳃组织中的Osmoregulation,离子转运和抗氧化有关的基因中发现了更高的差异表达;免疫防御,细菌裂解和肝癌组织中的细胞凋亡;肌肉组织中的开发和营养代谢。该研究的结果可以丰富虾应激生物学的基本知识,并为理解虾盐耐受的分子机制提供参考。

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