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Leveraging Comparative Genomics to Identify and Functionally Characterize Genes Associated with Sperm Phenotypes in Python bivittatus (Burmese Python)

机译:利用比较基因组学识别和功能性地表征蟒蛇培养物中与精子表型相关的基因(缅甸Python)

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Comparative genomics approaches provide a means of leveraging functional genomics information from a highly annotated model organism's genome (such as the mouse genome) in order to make physiological inferences about the role of genes and proteins in a less characterized organisms genome (such as the Burmese python). We employed a comparative genomics approach to produce the functional annotation of Python bivittatus genes encoding proteins associated with sperm phenotypes. We identify 129 gene-phenotype relationships in the python which are implicated in 10 specific sperm phenotypes. Results obtained through our systematic analysis identified subsets of python genes exhibiting associations with gene ontology annotation terms. Functional annotation data was represented in a semantic scatter plot. Together, these newly annotated Python bivittatus genome resources provide a high resolution framework from which the biology relating to reptile spermatogenesis, fertility, and reproduction can be further investigated. Applications of our research include (1) production of genetic diagnostics for assessing fertility in domestic and wild reptiles; (2) enhanced assisted reproduction technology for endangered and captive reptiles; and (3) novel molecular targets for biotechnology-based approaches aimed at reducing fertility and reproduction of invasive reptiles. Additional enhancements to reptile genomic resources will further enhance their value.
机译:比较基因组学方法提供了一种从高度注释的模型生物体(如小鼠基因组)中利用功能基因组学信息的方法,以便对生理推断进行关于基因和蛋白在较小的生物基因组中的作用(例如缅甸蟒蛇)。我们使用比较基因组学方法来产生编码与精子表型相关的蛋白质的Python Bivittatus基因的功能注释。我们鉴定蟒蛇中的129个基因表型关系,其涉及10种特异性精子表型。通过我们的系统分析获得的结果确定了与基因本体注释术语表现出关联的蟒蛇基因的子集。功能注释数据在语义散点图中表示。这些新注释的Python Bivittatus基因组资源提供了一种高分辨率框架,可以进一步研究与爬行动物精子发生,生育和繁殖的生物学。我们的研究应用包括(1)遗传诊断的生产,用于评估国内和野生爬行动物的生育; (2)加强濒危和俘虏爬行动物的辅助再生技术; (3)基于生物技术的方法的新分子靶点,旨在减少侵袭性爬行动物的生育率和繁殖。对爬行动物基因组资源的额外增强将进一步提高其价值。

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