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Genomics-assisted breeding in fruit trees

机译:基因组学辅助的果树育种

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摘要

Recent advancements in genomic analysis technologies have opened up new avenues to promote the efficiency of plant breeding. Novel genomics-based approaches for plant breeding and genetics research, such as genome-wide association studies (GWAS) and genomic selection (GS), are useful, especially in fruit tree breeding. The breeding of fruit trees is hindered by their long generation time, large plant size, long juvenile phase, and the necessity to wait for the physiological maturity of the plant to assess the marketable product (fruit). In this article, we describe the potential of genomics-assisted breeding, which uses these novel genomics-based approaches, to break through these barriers in conventional fruit tree breeding. We first introduce the molecular marker systems and whole-genome sequence data that are available for fruit tree breeding. Next we introduce the statistical methods for biparental linkage and quantitative trait locus (QTL) mapping as well as GWAS and GS. We then review QTL mapping, GWAS, and GS studies conducted on fruit trees. We also review novel technologies for rapid generation advancement. Finally, we note the future prospects of genomics-assisted fruit tree breeding and problems that need to be overcome in the breeding.
机译:基因组分析技术的最新进展为提高植物育种效率开辟了新途径。基于基因组的新颖方法可用于植物育种和遗传学研究,例如全基因组关联研究(GWAS)和基因组选择(GS),特别是在果树育种中。果树的繁殖时间长,植株大,幼年期长,以及必须等待植物的生理成熟度来评估可销售产品(果树),因此阻碍了果树的育种。在本文中,我们描述了使用基于基因组学的新方法进行基因组学辅助育种的潜力,以突破常规果树育种中的这些障碍。我们首先介绍可用于果树育种的分子标记系统和全基因组序列数据。接下来,我们介绍用于双亲联系和定量性状基因座(QTL)定位以及GWAS和GS的统计方法。然后,我们回顾对果树进行的QTL作图,GWAS和GS研究。我们还将回顾用于快速发电的新颖技术。最后,我们注意到基因组学辅助果树育种的未来前景以及育种中需要克服的问题。

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