Laboratory of Applied Molecular Biology-LAPLIC, Federal University of Rio Grande do Norte, Natal, RN, Brazil.
Postgraduate Program in Biotechnology, RENORBIO, Natal, RN, Brazil.
PLoS One. 2024 May 2;19(5):e0289351. doi: 10.1371/journal.pone.0289351. eCollection 2024.
In this study, an extensive analysis of microsatellite markers (Single Tandem Repeats-STRs) in Penaeus vannamei was conducted at an advanced level. The markers were thoroughly examined, characterized, and specific markers located within coding regions were identified. Out of a total of 306 STRs, 117 were classified as perfect markers based on their single repeat motif. Among these perfect markers, 62 were found to be associated with predicted coding genes (mRNA), which were involved in various functions such as binding, catalytic activity, ATP-dependent activity, transcription, structural and molecular regulation. To validate the accuracy of the findings, a sample of nine markers was subjected to in vitro testing, which confirmed the presence of polymorphisms within the population. These results suggest the existence of different protein isoforms within the population, indicating the potential of these markers for application in both population and phenotype-genotype association studies. This innovative approach opens up new possibilities for investigating the impact of genomic plasticity in populations of P. vannamei.
本研究对凡纳滨对虾微卫星标记(单串联重复-STRs)进行了深入分析。对标记进行了彻底的检查、特征描述,并确定了位于编码区域内的特定标记。在总共 306 个 STR 中,根据单一重复基序,有 117 个被归类为完美标记。在这些完美标记中,有 62 个与预测编码基因(mRNA)相关,这些基因参与各种功能,如结合、催化活性、ATP 依赖性活性、转录、结构和分子调节。为了验证发现的准确性,对 9 个标记进行了体外测试,证实了群体内存在多态性。这些结果表明群体内存在不同的蛋白质同工型,表明这些标记在群体和表型-基因型关联研究中的应用潜力。这种创新方法为研究凡纳滨对虾群体中基因组可塑性的影响开辟了新的可能性。