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Comparative Transcriptome Analysis in the Hepatopancreas Tissue of Pacific White Shrimp Litopenaeus vannamei Fed Different Lipid Sources at Low Salinity

机译:低盐度太平洋白对虾凡纳滨对虾摄食不同脂质来源的肝胰脏组织中的转录组比较分析

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摘要

RNA-seq was used to compare the transcriptomic response of hepatopancreas in juvenile Litopenaeus vannamei fed three diets with different lipid sources, including beef tallow (BT), fish oil (FO), and an equal combination of soybean oil + BT + linseed oil (SBL) for 8 weeks at 3 practical salinity unit (psu). A total of 9622 isogenes were annotated in 316 KEGG pathways and 39, 42 and 32 pathways significantly changed in the paired comparisons of FO vs SBL, BT vs SBL, or FO vs BT, respectively. The pathways of glycerolipid metabolism, linoleic acid metabolism, arachidonic acid metabolism, glycerophospholipid metabolism, fatty acid biosynthesis, fatty acid elongation, fatty acid degradation, and biosynthesis of unsaturated fatty acid were significantly changed in all paired comparisons between dietary lipid sources, and the pathways of glycerolipid metabolism, linoleic acid metabolism, arachidonic acid metabolism and glycerophospholipid metabolism significantly changed in the FO vs SBL and BT vs SBL comparisons. These pathways are associated with energy metabolism and cell membrane structure. The results indicate that lipids sources affect the adaptation of L. vannamei to low salinity by providing extra energy or specific fatty acids to change gill membrane structure and control iron balance. The results of this study lay a foundation for further understanding lipid or fatty acid metabolism in L. vannamei at low salinity.
机译:RNA-seq用于比较饲喂三种脂类来源不同的饮食(包括牛脂(BT),鱼油(FO)以及大豆油+ BT +亚麻子油( SBL),在3个实际盐度单位(psu)下进行8周。在316条KEGG途径中总共注释了9622个同基因,在FO与SBL,BT与SBL或FO与BT的配对比较中,分别显着改变了39、42和32个途径。在饮食脂质来源和途径之间的所有配对比较中,甘油脂代谢,亚油酸代谢,花生四烯酸代谢,甘油磷脂代谢,脂肪酸生物合成,脂肪酸延伸,脂肪酸降解和不饱和脂肪酸的生物合成的途径均发生了显着变化。 FO vs SBL和BT vs SBL比较中甘油脂代谢,亚油酸代谢,花生四烯酸代谢和甘油磷脂代谢的变化显着。这些途径与能量代谢和细胞膜结构有关。结果表明,脂质来源通过提供额外的能量或特定的脂肪酸来改变g膜结构和控制铁平衡,从而影响南美白对虾对低盐度的适应。这项研究的结果为进一步了解低盐度南美白对虾的脂质或脂肪酸代谢奠定了基础。

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