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Characterization of two lipid metabolism-associated genes and their expression profiles under different feeding conditions in Acipenser dabryanus

机译:在acipenser dabryanus中不同饲养条件下的两种脂质代谢相关基因及其表达谱的表征

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Acipenser dabryanus is an endemic species restricted to the upper reaches of the Yangtze River and is listed as a national first-class protected animal in China. In the present study, two lipid metabolism-associated genes, namely, lipoprotein lipase (LPL) and apolipoprotein E (apoE), were identified from the full-length transcriptome analysis of A. dabryanus . The full-length genes encoded polypeptides with typical conserved motifs and functional sites shared with their homologues in other fish. Gene expression profile analysis showed that the LPL and apoE genes were constitutively expressed in A. dabryanus . The highest expression level of LPL was found in the muscle, while apoE was predominantly expressed in the liver. In the fasting and refeeding experiment, one hundred twenty fish were randomly assigned to four groups (fasting 0, 3, 7 or 14 d and then refed for 14 d). Fasting and refeeding significantly regulated the expression level of LPL with various expression patterns in different tissues, whereas starvation showed little effect on apoE expression. In addition, the expression levels of LPL and apoE were significantly affected by feeding frequency. The fish were bred for eight weeks at six different feeding frequencies groups (once a day, two times a day, three times a day, four times a day, five times a day and six times a day). Both LPL and apoE expression levels were significantly upregulated in the liver in the highest feeding frequency group. Our study suggests potential roles for LPL and apoE in lipid metabolism in A. dabryanus and will be useful for further study of nutrition regulation in fish.
机译:acipenser dabryanus是一个限制在长江上游的地方性物种,被列为中国的全国一流的受保护动物。在本研究中,鉴定了两种脂质代谢相关基因,即脂蛋白脂肪酶(LPL)和载脂蛋白E(ApoE),从A. dabryanus的全长转录组分析中鉴定出来。全长基因编码了多肽,典型的保守基序和与其他鱼类的同源物共享的功能位点。基因表达谱分析表明,LPL和ApoE基因在Dabryanus中组成思考。在肌肉中发现了LPL的最高表达水平,而Apoe主要在肝脏中表达。在禁食和改进实验中,一百二十条鱼被随机分配到四组(禁食0,3,7或14d,然后改为14d)。禁食和改进显着调节不同组织中各种表达模式的LPL的表达水平,而饥饿对Apoe表达效果很小。此外,通过喂养频率显着影响LPL和ApoE的表达水平。在六种不同的喂养频率群中(每天一次,每天两次,每天三次,每天五次,每天五次),每天繁殖8周。在最高喂养频率组中,LPL和ApoE表达水平显着上调。我们的研究表明,LPL和Apoe在A. dabryanus中的脂质代谢中的潜在作用,并将有助于进一步研究鱼类营养调控。

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