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利用基因组资源和基因分型平台对豆类作物进行基因增强以实现营养粮食安全

Genetic Augmentation of Legume Crops Using Genomic Resources and Genotyping Platforms for Nutritional Food Security.

作者信息

Salgotra Romesh K, Stewart Charles Neal

机构信息

School of Biotechnology, Sher-e-Kashmir University of Agricultural Sciences & Technology of Jammu, Chatha, Jammu 190008, India.

Department of Plant Sciences, University of Tennessee, Knoxville, TN 37996, USA.

出版信息

Plants (Basel). 2022 Jul 18;11(14):1866. doi: 10.3390/plants11141866.

Abstract

Recent advances in next generation sequencing (NGS) technologies have led the surge of genomic resources for the improvement legume crops. Advances in high throughput genotyping (HTG) and high throughput phenotyping (HTP) enable legume breeders to improve legume crops more precisely and efficiently. Now, the legume breeder can reshuffle the natural gene combinations of their choice to enhance the genetic potential of crops. These genomic resources are efficiently deployed through molecular breeding approaches for genetic augmentation of important legume crops, such as chickpea, cowpea, pigeonpea, groundnut, common bean, lentil, pea, as well as other underutilized legume crops. In the future, advances in NGS, HTG, and HTP technologies will help in the identification and assembly of superior haplotypes to tailor the legume crop varieties through haplotype-based breeding. This review article focuses on the recent development of genomic resource databases and their deployment in legume molecular breeding programmes to secure global food security.

摘要

新一代测序(NGS)技术的最新进展推动了用于改良豆科作物的基因组资源的激增。高通量基因分型(HTG)和高通量表型分析(HTP)的进展使豆科作物育种者能够更精确、高效地改良豆科作物。现在,豆科作物育种者可以重新组合他们选择的自然基因组合,以提高作物的遗传潜力。这些基因组资源通过分子育种方法有效地应用于重要豆科作物的遗传改良,如鹰嘴豆、豇豆、木豆、花生、菜豆、小扁豆、豌豆以及其他未充分利用的豆科作物。未来,NGS、HTG和HTP技术的进展将有助于通过基于单倍型的育种来鉴定和组装优良单倍型,从而定制豆科作物品种。本文综述重点关注基因组资源数据库的最新发展及其在豆科作物分子育种计划中的应用,以确保全球粮食安全。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c349/9325189/cf64956bd90e/plants-11-01866-g001.jpg

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