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(00263)Genetic population structure of scallops going through a rapid population decline in the Eastern Mediterranean

机译:(00263)扇贝遗传人口结构经过东部地中海东部的迅速下降

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Genetic structure of the endemic Pecten jacobaeus of Aegean inferred from mitochondrial 16s DNA sequence analysis was performed. This genetic marker is a powerful tool for measuring genetic variation and gene flow among populations. Valuable scallop stocks were abundant in the past in Euboikos gulf and Aegean but now are severely depleted due to overfishing, pollution and ocean warming. To restock and conserve this bivalve, a better understanding of its genetic variability is essential. DNA was isolated using the nucleospin tissue kit after homogenization of ligament and PCR using genus specific primers. The PCR products were analyzed by sequencing. The genomic comparison was performed by Blast analysis. We studied two hypotheses: 1. Scallops (P. maximus & P. jacobeus)which can be easily distinguished by the shell morphology belong to the same species without a significant genetic variation or not 2. The possibility to extract DNA from dead shells, a good practice for protected or endangered species. We showed that it is possible to extract DNA from ligaments of dead shells exposed for longtime on the seabed. A high similarity (>99%)between our results for P. jacobeus (16s rRNA genome)and P. Jacobeus or P. maximus nucleotide collections was revealed
机译:进行了从线粒体16S DNA序列分析中推断的Aegean的地方性果树的遗传结构。该遗传标记是一种强大的工具,用于测量群体之间的遗传变异和基因流动。在Euboikos Gulf和Aegean的过去,Valigable Scallop股票丰富了,但由于过度捕捞,污染和海洋变暖,现在严重耗尽。为了补充和保存这种双语,更好地了解其遗传变异性是必不可少的。使用核棘组织试剂盒在悬垂性和PCR均质化后使用基因特异性引物进行分离DNA。通过测序分析PCR产物。通过BLAST分析进行基因组比较。我们研究了两个假设:1.扇贝(P.鲆&P. jacobeus),其可以由壳形态属于同一物种容易区分未经显著遗传变异或不2.可能性从弹死提取DNA,一个受保护或濒危物种的良好做法。我们表明,可以从海底上长时间暴露的死壳的韧带中提取DNA。我们的P. Jacobeus(16s RRNA Genome)和P.Jacobeus或P.Maximus核苷酸收集的结果之间的高相似性(> 99%)

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