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A transcriptomic approach to study the effect of long-term starvation and diet composition on the expression of mitochondrial oxidative phosphorylation genes in gilthead sea bream (Sparus aurata)

机译:一种转录组学方法研究长期饥饿和日粮组成对金头鲷(sparus aurata)线粒体氧化磷酸化基因表达的影响

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摘要

© 2017 The Author(s). Background: The impact of nutritional status and diet composition on mitochondrial oxidative phosphorylation (OXPHOS) in fish remains largely unknown. To identify biomarkers of interest in nutritional studies, herein we obtained a deep-coverage transcriptome by 454 pyrosequencing of liver and skeletal muscle cDNA normalised libraries from long-term starved gilthead sea bream (Sparus aurata) and fish fed different diets. Results: After clean-up of high-throughput deep sequencing reads, 699,991 and 555,031 high-quality reads allowed de novo assembly of liver and skeletal muscle sequences, respectively (average length: 374 and 441 bp; total megabases: 262 and 245 Mbp). An additional incremental assembly was completed by integrating data from both tissues (hybrid assembly). Assembly of hybrid, liver and skeletal muscle transcriptomes yielded, respectively, 19,530, 11,545 and 10,599 isotigs (average length: 1330, 1208 and 1390 bp, respectively) that were grouped into 15,954, 10,033 and 9189 isogroups. Following annotation, hybrid transcriptomic data were used to construct an oligonucleotide microarray to analyse nutritional regulation of the expression of 129 genes involved in OXPHOS in S. aurata. Starvation upregulated cytochrome c oxidase components and other key OXPHOS genes in the liver, which exhibited higher sensitive to food deprivation than the skeletal muscle. However, diet composition affected OXPHOS in the skeletal muscle to a greater extent than in the liver: most of genes upregulated under starvation presented higher expression among fish fed a high carbohydrate/low protein diet. Conclusions: Our findings indicate that the expression of coenzyme Q-binding protein (COQ10), cytochrome c oxidase subunit 6A2 (COX6A2) and ADP/ATP translocase 3 (SLC25A6) in the liver, and cytochrome c oxidase subunit 5B isoform 1 (COX5B1) in the liver and the skeletal muscle, are sensitive markers of the nutritional condition that may be relevant to assess the effect of changes in the feeding regime and diet composition on fish farming.
机译:©2017作者。背景:营养状况和饮食结构对鱼类线粒体氧化磷酸化(OXPHOS)的影响仍然未知。为了在营养研究中鉴定感兴趣的生物标记,本文通过对来自长期饥饿的金头鲷(Sparus aurata)和饲喂不同饮食的鱼的肝脏和骨骼肌cDNA归一化文库进行454焦磷酸测序,获得了一个深覆盖转录组。结果:在清除高通量深度测序读数后,699,991和555,031高质量读数分别允许从头组装肝脏和骨骼肌序列(平均长度:374和441 bp;总兆碱基:262和245 Mbp) 。通过整合来自两个组织的数据完成了另一个增量组装(混合组装)。杂合,肝和骨骼肌转录组的装配分别产生了19,530、11,545和10,599个等位基因(分别平均长度:1330、1208和1390 bp),分为15954、10033和9189个同种型。注释之后,使用杂交转录组数据构建寡核苷酸微阵列,以分析金黄色葡萄球菌中涉及OXPHOS的129个基因的表达的营养调控。饥饿使肝脏中的细胞色素C氧化酶成分和其他关键OXPHOS基因上调,与骨骼肌相比,它们对食物缺乏的敏感性更高。然而,日粮组成对骨骼肌中OXPHOS的影响比对肝脏的影响更大:在饥饿状态下上调的大多数基因在饲喂高碳水化合物/低蛋白饮食的鱼中表现出更高的表达。结论:我们的发现表明肝脏中辅酶Q结合蛋白(COQ10),细胞色素c氧化酶亚基6A2(COX6A2)和ADP / ATP转位酶3(SLC25A6)的表达以及细胞色素c氧化酶亚基5B亚型1(COX5B1)肝脏和骨骼肌中的“营养”是营养状况的敏感标记,可能与评估喂养方式和饮食组成变化对鱼类养殖的影响有关。

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