State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang, Henan, China.
Genomics Lab, Department of Plant Breeding and Genetics, Faculty of Agricultural Sciences and Technology, Bahauddin Zakariya University, Multan, Punjab, Pakistan.
Plant Biotechnol J. 2018 Mar;16(3):699-713. doi: 10.1111/pbi.12856. Epub 2018 Jan 15.
Functional genomics has transformed from futuristic concept to well-established scientific discipline during the last decade. Cotton functional genomics promise to enhance the understanding of fundamental plant biology to systematically exploit genetic resources for the improvement of cotton fibre quality and yield, as well as utilization of genetic information for germplasm improvement. However, determining the cotton gene functions is a much more challenging task, which has not progressed at a rapid pace. This article presents a comprehensive overview of the recent tools and resources available with the major advances in cotton functional genomics to develop elite cotton genotypes. This effort ultimately helps to filter a subset of genes that can be used to assemble a final list of candidate genes that could be employed in future novel cotton breeding programme. We argue that next stage of cotton functional genomics requires the draft genomes refinement, re-sequencing broad diversity panels with the development of high-throughput functional genomics tools and integrating multidisciplinary approaches in upcoming cotton improvement programmes.
在过去的十年中,功能基因组学已从未来的概念转变为成熟的科学学科。棉花功能基因组学有望增强对基础植物生物学的理解,系统地利用遗传资源来提高棉花纤维质量和产量,并利用遗传信息进行种质改良。然而,确定棉花基因的功能是一项更加具有挑战性的任务,其进展并不迅速。本文全面介绍了棉花功能基因组学的最新工具和资源,以及在培育优秀棉花基因型方面的主要进展。这项工作最终有助于筛选出一组可用于最终候选基因列表的基因,这些候选基因可用于未来的新型棉花育种计划。我们认为,棉花功能基因组学的下一阶段需要对草案基因组进行精细化处理,利用高通量功能基因组学工具对广泛的多样性群体进行重测序,并将多学科方法整合到未来的棉花改良计划中。