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首页> 外文期刊>Frontiers in Plant Science >Toward Genomics-Based Breeding in C3 Cool-Season Perennial Grasses
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Toward Genomics-Based Breeding in C3 Cool-Season Perennial Grasses

机译:朝着基于基于基于基于Genomics的C3酷季多年生草的繁殖

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Most important food and feed crops in the world belong to the C3 grass family. The future of food security is highly reliant on achieving genetic gains of those grasses. Conventional breeding methods have already reached a plateau for improving major crops. Genomics tools and resources have opened an avenue to explore genome-wide variability and make use of the variation for enhancing genetic gains in breeding programs. Major C3 annual cereal breeding programs are well equipped with genomic tools; however, genomic research of C3 cool-season perennial grasses is lagging behind. In this review, we discuss the currently available genomics tools and approaches useful for C3 cool-season perennial grass breeding. Along with a general review, we emphasize the discussion focusing on forage grasses that were considered orphan and have little or no genetic information available. Transcriptome sequencing and genotype-by-sequencing technology for genome-wide marker detection using next-generation sequencing (NGS) are very promising as genomics tools. Most C3 cool-season perennial grass members have no prior genetic information; thus NGS technology will enhance collinear study with other C3 model grasses like Brachypodium and rice. Transcriptomics data can be used for identification of functional genes and molecular markers, i.e., polymorphism markers and simple sequence repeats (SSRs). Genome-wide association study with NGS-based markers will facilitate marker identification for marker-assisted selection. With limited genetic information, genomic selection holds great promise to breeders for attaining maximum genetic gain of the cool-season C3 perennial grasses. Application of all these tools can ensure better genetic gains, reduce length of selection cycles, and facilitate cultivar development to meet the future demand for food and fodder.
机译:世界上最重要的食物和饲料作物属于C3草家族。粮食安全的未来高度依赖于实现这些草的遗传收益。传统的育种方法已经达到改善主要作物的高原。基因组学工具和资源已开通途径,以探索全基因组可变性,并利用用于增强繁殖计划中遗传收益的变化。主要的C3年度谷物养殖计划配备了基因组工具;然而,C3酷季多年生草的基因组研究落后于滞后。在这篇综述中,我们讨论了目前可用的基因组工具和方法,可用于C3酷季常年草养殖。除了一般综述,我们强调讨论侧重于被认为是孤儿的牧草草,几乎没有遗传信息。使用下一代测序(NGS)的基因组 - 宽标记检测的转录组测序和基因型逐序列序列是非常有前途的基因组工具。大多数C3酷季多年生草地成员没有先前的遗传信息;因此,NGS技术将通过诸如丘脑淋巴和米等其他C3模型草来增强联合研究。转录组织数据可用于鉴定功能基因和分子标记,即多态性标记物和简单的序列重复(SSR)。基于NGS的标记的基因组关联研究将促进标记辅助选择的标记鉴定。由于遗传信息有限,基因组选择对育种者进行了巨大的希望,以获得凉爽季节C3多年生草的最大遗传增益。所有这些工具的应用可以确保更好的遗传收益,减少选择周期的长度,并促进品种发展,以满足对食品和饲料的未来需求。

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