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首页> 外文期刊>Fish & Shellfish Immunology >Identification and expression analysis of differentially expressed genes from shrimp (Penaeus monodon) in response to low salinity stress.
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Identification and expression analysis of differentially expressed genes from shrimp (Penaeus monodon) in response to low salinity stress.

机译:鉴定和表达分析低盐度胁迫下虾对虾的差异表达基因。

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Four suppression subtractive hybridization (SSH) cDNA libraries were constructed to identify differentially expressed salinity stress responsive genes of black tiger shrimp, Penaeus monodon exposed to low (3 ppt) salinity conditions. Forward and reverse SSH cDNA libraries were developed from the gill and gut tissues of shrimp and clones having inserts larger than 300 bp were unidirectionally sequenced. Based on the sequence homology search, the identified genes were categorized for their putative functions related to a wide range of biological roles, such as nucleic acid regulation and replication, immune response, energy and metabolism, cell signaling, cellular process, cytoskeleton and membrane structure, stress and osmoregulation. Gene expression levels in response to low salinity conditions at 2 weeks post salinity stress of thirteen selected differentially expressed genes identified from SSH cDNA libraries (14-3-3 like protein, crustin, lysozyme, arginine kinase, Na+/K+-ATPase alpha -subunit, intracellular fatty acid binding protein, cathepsin B, anti-lipopolysaccharide factor, ferritin, ubiquitin conjugating enzyme E2, calreticulin, innexin 2 and heat shock protein 21) were analyzed by RT-PCR. The highest gene expression levels were observed for Na+/K+-ATPase alpha -subunit (34.28-folds) in gill tissues, intracellular fatty acid binding protein (13.30-folds) in gut tissues and innexin 2 (14.43-folds) in muscle tissues respectively. The differential and significant levels of gene expression indicate the functional role of these genes in shrimp salinity stress adaptive mechanisms.
机译:构建了四个抑制性消减杂交(SSH)cDNA文库,以鉴定暴露于低(3 ppt)盐度条件下的黑老虎虾斑节对虾的差异表达盐分胁迫响应基因。从虾的ill和肠组织开发了正向和反向SSH cDNA文库,并对插入片段大于300 bp的克隆进行了单向测序。根据序列同源性搜索,将鉴定出的基因按其与多种生物学作用相关的推定功能进行分类,例如核酸调节和复制,免疫应答,能量和代谢,细胞信号传导,细胞过程,细胞骨架和膜结构,压力和渗透压。从盐胁迫后2周开始,低盐度条件下的13种从SSH cDNA文库鉴定的差异表达基因(14-3-3如蛋白质,克鲁斯汀,溶菌酶,精氨酸激酶,Na + / K + -ATPaseα-亚基,细胞内脂肪酸结合蛋白,组织蛋白酶B,抗脂多糖因子,铁蛋白,泛素结合酶E2,钙网蛋白,内毒素2和热休克蛋白21)通过RT-PCR。在g组织,细胞内脂肪酸结合蛋白(13.30倍)中,Na + / K + -ATPaseα-亚基的基因表达水平最高(34.28倍)。 )分别在肠组织中和肌组织中的Innexin 2(14.43倍)。基因表达的差异和显着水平表明这些基因在虾盐度胁迫适应机制中的功能作用。

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