Genetic identification and phylogenetic relationships of fish species at Panjnad , Abbasia and Abu Dahbi canals (Punjab, Pakistan) based on mitochondrial COI sequences

Dr. Saima Naz, Ahmad Manan Mustafa Chatha, Durali DANABAS3, , Naila Kouser, Naeem Mehmood Ashraf
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Abstract

Fish is an extremely nutritious food that is abundant in important minerals, vitamin D, protein, and omega-3 fatty acids. Now a day, mislabeling of fish products is a major problem in the fish industry that affects the market prices and causes fluctuations. Phylogenetic analysis of nucleotide sequences is a technique that might be used to verify the identity of misidentified fish species. In this study five species (Cirrhinus mrigala, Hypophthalmichthys molitrix, two Actinopterygii sp., and Mastacembelus armatus) were used for phylogenetic analysis using the COI gene was amplified using the PCR, average product size is 658 base pairs. A comparison of obtained sequences was implemented through National Center for Biotechnology Information database (NCBI) and the Basic Local Alignment Search Tool (BLAST). Most resemble sequences were downloaded for comparison with our sequencing results. By using MAGA X the rates of different transitional substitutions are 11.33 and transversional substitutions are 6.83. The estimated Transition/Transversion bias (R) is 0.83. The K2P model was used for the estimation of this substitution pattern. Because most freshwater fish species were in the same order or family, phylogenetic tree analysis indicated that they grouped together. Using the InterPro database, the activity and regulatory pathways of the Cytochrome C Oxidase 1 gene are identified to show their activity on the protein level, especially for some important physiological functions. Each species of fish could be identified based on their speciation and node position and distance from their parent nodes. Based on the closest phylogenetic relations, DNA sequence-based study was developed for the accurate identification of fish species.
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基于线粒体COI序列的Panjnad、Abbasia和Abu Dahbi运河(巴基斯坦旁遮普)鱼类遗传鉴定和系统发育关系
鱼是一种营养丰富的食物,富含重要的矿物质、维生素D、蛋白质和omega-3脂肪酸。如今,鱼类产品的标签错误是鱼类行业的一个主要问题,它影响市场价格并导致波动。核苷酸序列的系统发育分析是一种可用于验证误认鱼类身份的技术。本研究以5个物种(Cirrhinus mrigala, Hypophthalmichthys molitrix, 2 Actinopterygii sp., Mastacembelus armatus)为研究对象,采用PCR扩增COI基因,平均产物大小为658个碱基对。通过国家生物技术信息中心数据库(NCBI)和基本局部比对检索工具(BLAST)对获得的序列进行比对。下载大部分相似序列与我们的测序结果进行比较。使用MAGA X,不同过渡取代率为11.33,过渡取代率为6.83。估计的过渡/翻转偏差(R)为0.83。K2P模型用于估计这种替代模式。由于大多数淡水鱼属于同一目或科,系统发育树分析表明它们属于同一类群。利用InterPro数据库,鉴定了细胞色素C氧化酶1基因的活性和调控途径,以显示其在蛋白质水平上的活性,特别是对一些重要的生理功能。每一种鱼都可以根据它们的种类、节点位置和与它们的亲本节点的距离来识别。基于最密切的系统发育关系,建立了基于DNA序列的研究方法来准确鉴定鱼类。
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