不同游泳活动条件下孟买鸭(Harpadon nehereus)和带鱼(Trichiurus lepturus)钙循环基因表达的比较研究

Hui Zhang , Gilbert Audira , Yuan Li , Weiwei Xian , Muhammed Muhsin Varikkodan , Chung-Der Hsiao
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引用次数: 12

摘要

肌肉的收缩和舒张事件是由许多重要的钙循环蛋白(ryanodine receptor, RYR)、肌钙蛋白C (troponin C, TNNC)、小白蛋白(parvalb, PVALB)、肌内质网钙转运三磷酸腺苷酶(SERCA, calsequestrin, CASQ)协调介导的。在高等脊椎动物中,钙循环蛋白的表达水平与细胞的肌肉收缩/松弛能力呈正相关。在本研究中,我们利用rna - seq技术分别研究了两种海洋鱼类——孟买鸭(Harpadon nehereus)和带鱼(Trichiurus lepturus)中钙循环基因的表达谱。我们研究了钙循环蛋白的表达水平是否也与鱼类的游泳能力呈正相关的假设。我们首次使用Illumina测序技术(NextSeq500)对孟买鸭肌肉转录组进行测序、组装和注释。RNA测序共获得47,752,240条清洗reads(存储在NCBI SRA数据库中,登录号为SRX1706379),使用Trinity软件重新组装后获得26,288条unigenes (N50为486 bp)。BLASTX对NR、GO、KEGG和eggNOG数据库的标注率分别为100%、65%、26%、94%和88%。鱼类肌肉中显性表达基因的比较表明,带鱼(SRX1674471)钙循环基因的表达量比孟买鸭高1.4 ~ 51.6倍。在5个钙循环基因中,CASQ(51.6倍)和PVALB(9.1倍)的折叠变化结果非常显著,它们都响应钙结合,降低肌内质网和细胞质中的游离钙浓度。综上所述,我们证实了钙循环基因在健壮的游泳鱼类中的高丰表达率。目前的肌肉转录组和已确定的钙循环基因数据可以为鱼类的肌肉生理学提供更多的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Comparative study the expression of calcium cycling genes in Bombay duck (Harpadon nehereus) and beltfish (Trichiurus lepturus) with different swimming activities

The contraction and relaxation events of the muscle is mediated by the coordination of many important calcium cycling proteins of ryanodine receptor (RYR), troponin C (TNNC), parvalbumin (PVALB), sarcoendoplasmic reticulum calcium transport ATPase (SERCA) and calsequestrin (CASQ). In higher vertebrates, the expression level of calcium cycling proteins are positively correlated to the muscle contraction/relaxation ability of the cell. In this study, we used RNAseq to explore the expression profile of calcium cycling genes between two marine fish of Bombay duck (Harpadon nehereus) and beltfish (Trichiurus lepturus) with poor and robust swimming activities, respectively. We have studied the hypothesis whether the expression level of calcium cycling proteins are also positive correlated to swimming ability in fish. We used Illumina sequencing technology (NextSeq500) to sequence, assemble and annotate the muscle transcriptome of Bombay duck for the first time. A total of 47,752,240 cleaned reads (deposited in NCBI SRA database with accession number of SRX1706379) were obtained from RNA sequencing and 26,288 unigenes (with N50 of 486 bp) were obtained after de novo assembling with Trinity software. BLASTX against NR, GO, KEGG and eggNOG databases show 100%, 65%, 26%, 94% and 88% annotation rate, respectively. Comparison of the dominantly expressed unigenes in fish muscle shows calcium cycling gene expression in beltfish (SRX1674471) is 1.4- to 51.6-fold higher than Bombay duck. Among five calcium cycling genes, the fold change results are very significant in CASQ (51.6 fold) and PVALB (9.1 fold) and both of them are responsive for calcium binding to reduce free calcium concentration in the sarcoendoplasmic reticulum and cytoplasm. In conclusion, we confirmed that the high abundant expression rate of calcium cycling genes in robust swimming fish species. The current muscle transcriptome and identified calcium cycling gene data can provide more insights into the muscle physiology of fish.

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