Aversano Riccardo, Ercolano Maria Raffaella, Caruso Immacolata, Fasano Carlo, Rosellini Daniele, Carputo Domenico
Department of Soil, Plant, Environmental and Animal Production Sciences, University of Naples Federico II, Via Università 100, Portici 80055, Italy.
Department of Applied Biology, University of Perugia, Borgo XX Giugno 74, Perugia 06121, Italy.
Int J Mol Sci. 2012;13(8):10316-10335. doi: 10.3390/ijms130810316. Epub 2012 Aug 17.
Polyploidy is a very common phenomenon in the plant kingdom, where even diploid species are often described as paleopolyploids. The polyploid condition may bring about several advantages compared to the diploid state. Polyploids often show phenotypes that are not present in their diploid progenitors or exceed the range of the contributing species. Some of these traits may play a role in heterosis or could favor adaptation to new ecological niches. Advances in genomics and sequencing technology may create unprecedented opportunities for discovering and monitoring the molecular effects of polyploidization. Through this review, we provide an overview of technologies and strategies that may allow an in-depth analysis of polyploid genomes. After introducing some basic aspects on the origin and genetics of polyploids, we highlight the main tools available for genome and gene expression analysis and summarize major findings. In the last part of this review, the implications of next generation sequencing are briefly discussed. The accumulation of knowledge on polyploid formation, maintenance, and divergence at whole-genome and subgenome levels will not only help plant biologists to understand how plants have evolved and diversified, but also assist plant breeders in designing new strategies for crop improvement.
多倍体现象在植物界非常普遍,甚至二倍体物种也常被描述为古多倍体。与二倍体状态相比,多倍体状态可能带来一些优势。多倍体通常表现出其二倍体祖先所没有的表型,或超出亲本物种的范围。其中一些性状可能在杂种优势中起作用,或有利于适应新的生态位。基因组学和测序技术的进步可能为发现和监测多倍体化的分子效应创造前所未有的机会。通过本综述,我们概述了一些技术和策略,这些技术和策略可能有助于深入分析多倍体基因组。在介绍了多倍体的起源和遗传学的一些基本方面之后,我们重点介绍了可用于基因组和基因表达分析的主要工具,并总结了主要发现。在本综述的最后一部分,简要讨论了下一代测序的意义。在全基因组和亚基因组水平上积累关于多倍体形成、维持和分化的知识,不仅将有助于植物生物学家了解植物是如何进化和多样化的,还将帮助植物育种者设计新的作物改良策略。