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Connecting genome structural variation with complex traits in crop plants

机译:将基因组结构变异与作物植物复杂性状相变

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Key messageStructural genome variation is a major determinant of useful trait diversity. We describe how genome analysis methods are enabling discovery of trait-associated structural variants and their potential impact on breeding.Abstract As our understanding of complex crop genomes continues to grow, there is growing evidence that structural genome variation plays a major role in determining traits important for breeding and agriculture. Identifying the extent and impact of structural variants in crop genomes is becoming increasingly feasible with ongoing advances in the sophistication of genome sequencing technologies, particularly as it becomes easier to generate accurate long sequence reads on a genome-wide scale. In this article, we discuss the origins of structural genome variation in crops from ancient and recent genome duplication and polyploidization events and review high-throughput methods to assay such variants in crop populations in order to find associations with phenotypic traits. There is increasing evidence from such studies that gene presence-absence and copy number variation resulting from segmental chromosome exchanges may be at the heart of adaptive variation of crops to counter abiotic and biotic stress factors. We present examples from major crops that demonstrate the potential of pangenomic diversity as a key resource for future plant breeding for resilience and sustainability.
机译:关键词集团基因组变异是有用特质多样性的主要决定因素。我们描述了如何发现基因组分析方法能够发现具有相关的结构变体以及它们对育种的潜在影响。随着我们对复杂作物基因组的理解继续增长,越来越多的证据表明结构基因组变异在确定重要性方面发挥着重要作用用于繁殖和农业。确定作物基因组中结构变体的程度和影响变得越来越可行,因为在基因组测序技术的复杂性方面的持续进展中,特别是因为它在基因组范围内更容易产生准确的长序列。在本文中,我们讨论了来自古老的基因组复制和多倍化事件的作物结构基因组变异的起源,并审查了高通量方法以测定作物群体中的这种变体,以便找到与表型特征的关联。来自这些研究的越来越多的证据,即由节段性染色体交换所产生的基因存在和拷贝数变异可能是对反非生物和生物应激因子的适应性变化的核心。我们提出了主要作物的例子,证明了Pangenomic多样性作为未来植物育种的关键资源,以适应韧性和可持续性。

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