生物信息学研究及谷胱甘肽 S-转移酶基因在鲤鱼(Cyprinus carpio)和褐鳟鱼(Salmo trutta)部分组织中的 mRNA 转录比较

Badrul Islam Elsevar, M. Bayır
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摘要

生物信息学彻底改变了我们研究基因表达和调控的方式,使研究人员能够以前所未有的速度和精度分析大规模基因组数据。在这项研究中,我们利用生物信息学工具和方法比较了谷胱甘肽 S-转移酶(gstr)基因在两种不同鱼类(鲤鱼和褐鳟)中的 mRNA 转录情况。本研究采集了雌雄褐鳟和鲤鱼的肝、肠、肌肉、脑、心、眼、脾、鳃、肾、胃、卵巢和睾丸样本,并从各组织中分离总 RNA 合成 cDNA。然后,通过 qPCR 方法测定了所有组织样本中 gstr 基因的转录量。确定了基因结构、保守基因同源设计、植物基因树分析以及与其他脊椎动物的相似性-相同性比。在研究褐鳟 gstr 基因在雌雄组织间的转录差异时,发现雄鱼的肠道、鳃、肾、胃、肌肉和性腺的转录差异显著高于雌鱼(p<0.05),但其他组织间的差异无统计学意义。经测定,肝脏的基因表达量最高(p<0.05),脑、眼、脾、肾、心和脾组织的 gstr 基因表达量在雌雄鲤鱼中均明显低于其他组织(p<0.05)。此外,通过分子内分析确定,褐鳟的 gstr 基因与虹鳟的相似度和同一性最高,而鲤鱼的 gstr 基因与金鱼的相似度和同一性最高。
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Bioinformatics studies and comparison of mRNA transcription of glutathione S-transferase gene in some tissues of common carp (Cyprinus carpio) and brown trout (Salmo trutta)
Bioinformatics has revolutionized the way we study gene expression and regulation, enabling researchers to analyze large-scale genomic data with unprecedented speed and precision. In this study, we use bioinformatics tools and methods to compare mRNA transcription of glutathione S-transferase (gstr) gene in two different fish species: common carp and brown trout. In this study, liver, intestine, muscle, brain, heart, eye, spleen, gill, kidney, stomach, ovary and testis samples were taken from male and female brown trout and common carp, and total RNA was isolated from each tissue to synthesize cDNA from these tissues. Then, the transcript amounts of the gstr gene were determined by qPCR from all tissue samples. Gene structures, conserved gene synteny design, phyogenetic tree analyzes and similarity-identity ratios with other vertebrates were determined. When the transcriptional differences between male and female tissues for the brown trout gstr gene were examined, it was seen that the intestine, gill, kidney, stomach, muscle and gonads were significantly higher in male fish (p<0.05), but the differences between other tissues were not statistically significant. It has been determined that the highest gene expression was liver (p<0.05) and brain, eye, spleen, kidney, heart and spleen tissues have significantly lower gstr gene expression than other tissues in both male and female in common carp. In addition, the in-silico analysis determined that the brown trout gstr gene shared the highest similarity and identity ratio with rainbow trout, and the common carp gstr gene shared the highest similarity and identity ratio with goldfish.
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