基于基因组学的高效 "端到端 "选择性树木育种框架

IF 3.1 2区 生物学 Q2 ECOLOGY Heredity Pub Date : 2024-01-03 DOI:10.1038/s41437-023-00667-w
Yousry A. El-Kassaby, Eduardo P. Cappa, Charles Chen, Blaise Ratcliffe, Ilga M. Porth
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摘要

自 20 世纪 50 年代启动以来,世界范围内的树木选择性育种计划一直遵循着反复循环选择、育种(交配)和测试阶段的循环选择方案,基本上没有改变,以加快这一进程或解决环境突发事件和问题。在此,我们介绍一种 "端到端 "选择性树木育种框架,该框架包括(1)利用战略性预选的基于 GWAS 的序列数据捕获性状结构信息;(2)在受测个体间产生前所未有的谱系关系解析;(3)通过利用现成的风媒(OP)家系,省去育种阶段。多性状多地点分析产生的个体育种值还被用于最佳贡献选择方案,以有效管理遗传增益/共生权衡和性状对选择的相关响应。概念验证研究涉及在加拿大不列颠哥伦比亚省三个地点生长的 40 年云杉 OP 测试种群,清楚地证明了与传统方法相比,我们的方法能够在大幅缩短的时间内获取大部分可用的遗传增益。所提出的框架有望提高现有选择性育种计划的效率,加快生态和环境重要树种新计划的启动,并更有效地解决气候变化引起的生物和非生物压力问题。
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Efficient genomics-based ‘end-to-end’ selective tree breeding framework
Since their initiation in the 1950s, worldwide selective tree breeding programs followed the recurrent selection scheme of repeated cycles of selection, breeding (mating), and testing phases and essentially remained unchanged to accelerate this process or address environmental contingencies and concerns. Here, we introduce an “end-to-end” selective tree breeding framework that: (1) leverages strategically preselected GWAS-based sequence data capturing trait architecture information, (2) generates unprecedented resolution of genealogical relationships among tested individuals, and (3) leads to the elimination of the breeding phase through the utilization of readily available wind-pollinated (OP) families. Individuals’ breeding values generated from multi-trait multi-site analysis were also used in an optimum contribution selection protocol to effectively manage genetic gain/co-ancestry trade-offs and traits’ correlated response to selection. The proof-of-concept study involved a 40-year-old spruce OP testing population growing on three sites in British Columbia, Canada, clearly demonstrating our method’s superiority in capturing most of the available genetic gains in a substantially reduced timeline relative to the traditional approach. The proposed framework is expected to increase the efficiency of existing selective breeding programs, accelerate the start of new programs for ecologically and environmentally important tree species, and address climate-change caused biotic and abiotic stress concerns more effectively.
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来源期刊
Heredity
Heredity 生物-进化生物学
CiteScore
7.50
自引率
2.60%
发文量
84
审稿时长
4-8 weeks
期刊介绍: Heredity is the official journal of the Genetics Society. It covers a broad range of topics within the field of genetics and therefore papers must address conceptual or applied issues of interest to the journal''s wide readership
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