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Advances in tomato research in the post-genome era

机译:后基因组时代的番茄研究进展

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The tomato ( Solanum lycopersicum ) draft genome, along with a draft of the wild relative, Solanum pimpinellifolium , were released in 2012, almost a decade after the International Tomato Genome project was initiated. Tomato is an important domesticated crop species, as well as a model organism for many aspects of plant biology such as fleshy fruit development, ripening, disease resistance, plant architecture, and compound leaf development. For these reasons, there has been a substantial effort for producing a high quality reference genome that will serve as an anchor for tomato species, and for closely related Solanaceae plants. The utility of this genome has already been demonstrated by a relatively large number of studies that have been published since the release of the sequence, covering a wide range of topics including gene expression, genetic diversity, phylogeny, comparative genomics, and epigenetics. With the availability of the potato genome, it is now possible to perform detailed comparative genomic analysis of gene families in the Solanaceae, facilitated by conservation and synteny between their genomes. A large number of ongoing efforts will result in the sequencing of hundreds of wild and domesticated tomato accessions from various populations, uncovering the breeding history of tomatoes and introducing new genomic technologies to accelerate breeding processes. In this review, we provide an overview of the origins of tomato and its position in the wider Solanaceae, and demonstrate the impact of the tomato genome sequence on Solanaceae research on the basis of recent literature that has made use of this new resource.
机译:番茄(Solanum lycopersicum)草案基因组,连同野生亲缘草(Solanum pimpinellifolium)草案,于国际番茄基因组计划启动近十年后于2012年发布。番茄是重要的驯化农作物,也是植物生物学许多方面的模型生物,例如果肉发育,成熟,抗病性,植物结构和复合叶片发育。由于这些原因,已经做出了巨大的努力来产生高质量的参考基因组,该基因组将作为番茄物种和紧密相关的茄科植物的锚。自从序列释放以来,已经通过相对大量的研究证明了该基因组的实用性,涵盖了广泛的主题,包括基因表达,遗传多样性,系统发育,比较基因组学和表观遗传学。有了马铃薯基因组的可用性,现在有可能对茄科中的基因家族进行详细的比较基因组分析,这要归功于其基因组之间的保守性和一致性。正在进行的大量努力将导致对来自不同种群的数百种野生和驯化番茄种质进行测序,揭示番茄的育种历史并引入新的基因组技术以加快育种进程。在这篇综述中,我们概述了番茄的起源及其在茄科中的地位,并根据利用这种新资源的最新文献,论证了番茄基因组序列对茄科研究的影响。

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