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首页> 外文期刊>Current opinion in plant biology >Genetic architecture of naturally occurring quantitative traits in plants: an updated synthesis. (Special Issue: Genome studies and molecular genetics.)
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Genetic architecture of naturally occurring quantitative traits in plants: an updated synthesis. (Special Issue: Genome studies and molecular genetics.)

机译:植物中自然发生的数量性状的遗传结构:更新的合成。 (特刊:基因组研究和分子遗传学。)

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摘要

Deciphering the genetic and molecular bases of quantitative variation is a long-standing challenge in plant biology because it is essential for understanding evolution and for accelerating plant breeding. Recent multi-trait analyses at different phenotypic levels are uncovering the pleiotropy and the genetic regulation underlying high-level complex traits. Thus, the number of known causal loci, genes and nucleotide polymorphisms is expanding. Current plant causal catalogs contain ~400 genes and natural polymorphisms revealing several dysfunctional allelic series that involve multiple mutations. In addition, repeated evolution of quantitative traits mediated by large effect alleles is found across plant phylogeny. Finally, systematic analyses of genetic and environmental interactions are beginning to elucidate the molecular mechanisms of relevant interactions.
机译:解密数量变异的遗传和分子基础是植物生物学中的一项长期挑战,因为这对于理解进化和加速植物育种至关重要。最近在不同表型水平上的多性状分析正在揭示高水平复杂性状基础的多效性和遗传调控。因此,已知的原因基因座,基因和核苷酸多态性的数量正在增加。当前的植物因果目录包含约400个基因和自然多态性,揭示了几个功能异常的等位基因系列,涉及多个突变。另外,在整个植物系统发育中发现了由大等位基因等位基因介导的数量性状的重复进化。最后,对遗传和环境相互作用的系统分析开始阐明相关相互作用的分子机制。

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