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Hybridization in Plants: Old Ideas New Techniques

机译:植物杂交:旧思想新技术

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摘要

Hybridization has played an important role in the evolution of many lineages. With the growing availability of genomic tools and advancements in genomic analyses, it is becoming increasingly clear that gene flow between divergent taxa can generate new phenotypic diversity, allow for adaptation to novel environments, and contribute to speciation. Hybridization can have immediate phenotypic consequences through the expression of hybrid vigor. On longer evolutionary time scales, hybridization can lead to local adaption through the introgression of novel alleles and transgressive segregation and, in some cases, result in the formation of new hybrid species. Studying both the abundance and the evolutionary consequences of hybridization has deep historical roots in plant biology. Many of the hypotheses concerning how and why hybridization contributes to biological diversity currently being investigated were first proposed tens and even hundreds of years ago. In this Update, we discuss how new advancements in genomic and genetic tools are revolutionizing our ability to document the occurrence of and investigate the outcomes of hybridization in plants.
机译:杂交在许多谱系的进化中发挥了重要作用。随着基因组工具的可用性不断提高以及基因组分析的发展,越来越明显的是,不同类群之间的基因流可以产生新的表型多样性,可以适应新的环境,并有助于物种形成。杂交可通过表达杂交活力而立即产生表型后果。在更长的进化时间尺度上,杂交可通过新的等位基因的渗入和过海的分离而导致局部适应,并且在某些情况下会导致形成新的杂种。研究杂交的丰度和进化结果在植物生物学中具有深厚的历史根源。关于杂交如何以及为什么对当前正在研究的生物多样性有贡献的许多假说最早是在数十年甚至数百年前提出的。在本更新中,我们讨论了基因组和遗传工具方面的新进展正在如何改变我们记录植物杂交的发生并研究其杂交结果的能力。

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