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The State of Omics Research for Farmed Penaeids: Advances in Research and Impediments to Industry Utilization

机译:养殖对虾的组学研究现状:研究进展和产业利用障碍

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摘要

Elucidating the underlying genetic drivers of production traits in agricultural and aquaculture species is critical to efforts to maximize farming efficiency. “Omics” based methods (i.e., transcriptomics, genomics, proteomics, and metabolomics) are increasingly being applied to gain unprecedented insight into the biology of many aquaculture species. While the culture of penaeid shrimp has increased markedly, the industry continues to be impeded in many regards by disease, reproductive dysfunction, and a poor understanding of production traits. Extensive effort has been, and continues to be, applied to develop critical genomic resources for many commercially important penaeids. However, the industry application of these genomic resources, and the translation of the knowledge derived from “omics” studies has not yet been completely realized. Integration between the multiple “omics” resources now available (i.e., genome assemblies, transcriptomes, linkage maps, optical maps, and proteomes) will prove critical to unlocking the full utility of these otherwise independently developed and isolated resources. Furthermore, emerging “omics” based techniques are now available to address longstanding issues with completing keystone genome assemblies (e.g., through long-read sequencing), and can provide cost-effective industrial scale genotyping tools (e.g., through low density SNP chips and genotype-by-sequencing) to undertake advanced selective breeding programs (i.e., genomic selection) and powerful genome-wide association studies. In particular, this review highlights the status, utility and suggested path forward for continued development, and improved use of “omics” resources in penaeid aquaculture.
机译:阐明农业和水产养殖物种生产特性的潜在遗传驱动因素,对于最大程度提高农业效率的努力至关重要。越来越多地采用基于“组学”的方法(即转录组学,基因组学,蛋白质组学和代谢组学)来获得对许多水产养殖物种生物学的空前洞察力。尽管对虾的养殖显着增加,但疾病,生殖功能障碍以及对生产性状的了解不足,在许多方面仍然阻碍了该行业的发展。已经并且将继续进行大量的努力来开发许多商业上重要的对虾的关键基因组资源。然而,这些基因组资源的工业应用以及从“组学”研究中获得的知识的翻译尚未完全实现。目前可用的多个“组学”资源(即,基因组装配,转录组,连锁图,光学图和蛋白质组)之间的整合,对于释放这些原本独立开发和孤立的资源的全部效用至关重要。此外,新兴的基于“组学”的技术现在可以解决完整的关键基因组装配问题(例如,通过长时间阅读测序),并可以提供经济高效的工业规模基因分型工具(例如,通过低密度SNP芯片和基因型),以解决长期存在的问题。 (按测序)进行高级选择性育种程序(即基因组选择)和强大的全基因组关联研究。特别是,这篇综述着重指出了对虾类水产养殖业的现状,用途和继续发展的建议途径,以及对“组学”资源的更好利用。

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