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Genotyping-by-Sequencing for Plant Breeding and Genetics

机译:通过测序进行植物育种和遗传基因分型

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Rapid advances in “next-generation” DNA sequencing technology have brought the US$1000 human (Homo sapiens) genome within reach while providing the raw sequencing output for researchers to revolutionize the way populations are genotyped. To capitalize on these advancements, genotyping-by-sequencing (GBS) has been developed as a rapid and robust approach for reduced-representation sequencing of multiplexed samples that combines genome-wide molecular marker discovery and genotyping. The flexibility and low cost of GBS makes this an excellent tool for many applications and research questions in plant genetics and breeding. Here we address some of the new research opportunities that are becoming more feasible with GBS. Furthermore, we highlight areas in which GBS will become more powerful with the continued increase of sequencing output, development of reference genomes, and improvement of bioinformatics. The ultimate goal of plant biology scientists is to connect phenotype to genotype. In plant breeding, the genotype can then be used to predict phenotypes and select improved cultivars. Furthering our understanding of the connection between heritable genetic factors and the resulting phenotypes will enable genomics-assisted breeding to exist on the scale needed to increase global food supplies in the face of decreasing arable land and climate change.
机译:“下一代” DNA测序技术的飞速发展已经使1000美元的人类(智人)基因组触手可及,同时为研究人员提供了原始测序输出,以改变人群的基因分型方式。为了利用这些进展,已开发了基于序列的基因分型法(GBS),作为一种结合了全基因组分子标记物发现和基因分型的多重样品的还原表示测序的快速而强大的方法。 GBS的灵活性和低成本使其成为植物遗传学和育种中许多应用和研究问题的出色工具。在这里,我们将探讨GBS变得越来越可行的一些新的研究机会。此外,我们重点介绍了随着测序输出的不断增加,参考基因组的发展以及生物信息学的改进,GBS将变得更加强大的领域。植物生物学家的最终目标是将表型与基因型联系起来。然后在植物育种中,基因型可用于预测表型并选择改良的品种。进一步了解遗传基因因素与产生的表型之间的联系将使基因组学辅助育种能够在可耕地和气候变化减少的情况下以增加全球粮食供应所需的规模存在。

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