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Incomplete dominance of deleterious alleles contributes substantially to trait variation and heterosis in maize
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نویسنده
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yang j. ,mezmouk s. ,baumgarten a. ,buckler e.s. ,guill k.e. ,mcmullen m.d. ,mumm r.h. ,ross-ibarra j.
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منبع
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plos genetics - 2017 - دوره : 13 - شماره : 9
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چکیده
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Deleterious alleles have long been proposed to play an important role in patterning phenotypic variation and are central to commonly held ideas explaining the hybrid vigor observed in the offspring of a cross between two inbred parents. we test these ideas using evolutionary measures of sequence conservation to ask whether incorporating information about putatively deleterious alleles can inform genomic selection (gs) models and improve phenotypic prediction. we measured a number of agronomic traits in both the inbred parents and hybrids of an elite maize partial diallel population and re-sequenced the parents of the population. inbred elite maize lines vary for more than 350,000 putatively deleterious sites,but show a lower burden of such sites than a comparable set of traditional landraces. our modeling reveals widespread evidence for incomplete dominance at these loci,and supports theoretical models that more damaging variants are usually more recessive. we identify haplotype blocks using an identity-by-decent (ibd) analysis and perform genomic prediction analyses in which we weigh blocks on the basis of complementation for segregating putatively deleterious variants. cross-validation results show that incorporating sequence conservation in genomic selection improves prediction accuracy for grain yield and other fitness-related traits as well as heterosis for those traits. our results provide empirical support for an important role for incomplete dominance of deleterious alleles in explaining heterosis and demonstrate the utility of incorporating functional annotation in phenotypic prediction and plant breeding. © 2017 yang et al.
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آدرس
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department of plant sciences,university of california,davis,davis,ca,united states,department of agronomy and horticulture,university of nebraska-lincoln,lincoln,ne, United States, department of plant sciences,university of california,davis,davis,ca,united states,kws saat se,einbeck, Germany, dupont pioneer,johnston,ia, United States, us department of agriculture,agricultural research service,ithaca,ny, United States, us department of agriculture,agricultural research service,columbia,mo, United States, us department of agriculture,agricultural research service,columbia,mo,united states,division of plant sciences,university of missouri,columbia,mo, United States, department of crop sciences and the illinois plant breeding center,university of illinois at urbana-champaign,urbana,il, United States, department of plant sciences,university of california,davis,davis,ca,united states,center for population biology and genome center,university of california,davis,ca, United States
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Authors
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