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Modeling of genetic gain for single traits from marker-assisted seedling selection in clonally propagated crops

机译:克隆繁殖作物中标记辅助苗选择的单性状遗传增益建模

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Seedling selection identifies superior seedlings as candidate cultivars based on predicted genetic potential for traits of interest. Traditionally, genetic potential is determined by phenotypic evaluation. With the availability of DNA tests for some agronomically important traits, breeders have the opportunity to include DNA information in their seedling selection operations—known as marker-assisted seedling selection. A major challenge in deploying marker-assisted seedling selection in clonally propagated crops is a lack of knowledge in genetic gain achievable from alternative strategies. Existing models based on additive effects considering seed-propagated crops are not directly relevant for seedling selection of clonally propagated crops, as clonal propagation captures all genetic effects, not just additive. This study modeled genetic gain from traditional and various marker-based seedling selection strategies on a single trait basis through analytical derivation and stochastic simulation, based on a generalized seedling selection scheme of clonally propagated crops. Various trait-test scenarios with a range of broad-sense heritability and proportion of genotypic variance explained by DNA markers were simulated for two populations with different segregation patterns. Both derived and simulated results indicated that marker-based strategies tended to achieve higher genetic gain than phenotypic seedling selection for a trait where the proportion of genotypic variance explained by marker information was greater than the broad-sense heritability. Results from this study provides guidance in optimizing genetic gain from seedling selection for single traits where DNA tests providing marker information are available.
机译:幼苗的选择基于对目标性状的预测遗传潜力,将优良的幼苗确定为候选品种。传统上,遗传潜力是通过表型评估来确定的。通过对某些重要农艺性状进行DNA检测的方法,育种者有机会将DNA信息纳入其育苗选择操作中,即标记辅助育苗选择。在无性繁殖作物中部署标记辅助幼苗选择的主要挑战是缺乏从替代策略中获得的遗传增益知识。考虑种子繁殖作物的基于加性效应的现有模型与无性繁殖作物的幼苗选择没有直接关系,因为克隆繁殖可捕获所有遗传效应,而不仅仅是加性。本研究基于克隆繁殖作物的广义幼苗选择方案,通过分析性推导和随机模拟,以单一性状为基础,对传统和各种基于标记的幼苗选择策略的遗传增益进行建模。针对具有不同隔离模式的两个种群,模拟了具有广泛的遗传力范围和由DNA标记解释的基因型变异比例的各种特征测试场景。无论是衍生结果还是模拟结果都表明,基于标记的策略比使用表型幼苗选择获得更高的遗传增益,其中通过标记信息解释的基因型变异比例大于广义遗传性。这项研究的结果为优化从单性状的幼苗选择中获得的遗传增益提供了指导,在这种情况下,DNA测试可以提供标记信息。

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