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番茄的结构与功能基因组学

Structural and functional genomics of tomato.

作者信息

Barone Amalia, Chiusano Maria Luisa, Ercolano Maria Raffaella, Giuliano Giovanni, Grandillo Silvana, Frusciante Luigi

机构信息

Department of Soil, Plant, Environmental and Animal Production Sciences, University of Naples "Federico II", Portici, Italy.

出版信息

Int J Plant Genomics. 2008;2008:820274. doi: 10.1155/2008/820274.

Abstract

Tomato (Solanum lycopersicum L.) is the most intensively investigated Solanaceous species both in genetic and genomics studies. It is a diploid species with a haploid set of 12 chromosomes and a small genome (950 Mb). Based on the detailed knowledge on tomato structural genomics, the sequencing of the euchromatic regions started in the year 2005 as a common effort of different countries. The manuscript focuses on markers used for tomato, on mapping efforts mainly based on exploitation of natural biodiversity, and it gives an updated report on the international sequencing activities. The principal tools developed to explore the function of tomato genes are also summarized, including mutagenesis, genetic transformation, and transcriptome analysis. The current progress in bioinformatic strategies available to manage the overwhelming amount of data generated from different tomato "omics" approaches is reported, and emphasis is given to the effort of producing a computational workbench for the analysis of the organization, as well as the functionality and evolution of the Solanaceae family.

摘要

番茄(Solanum lycopersicum L.)是茄科植物中在遗传学和基因组学研究方面受到最深入研究的物种。它是二倍体物种,单倍体有12条染色体,基因组较小(950兆碱基)。基于对番茄结构基因组学的详细了解,常染色质区域的测序于2005年作为不同国家的共同努力而启动。该手稿重点关注用于番茄的标记、主要基于利用自然生物多样性的作图工作,并给出了关于国际测序活动的最新报告。还总结了为探索番茄基因功能而开发的主要工具,包括诱变、遗传转化和转录组分析。报告了目前在生物信息学策略方面取得的进展,这些策略可用于管理从不同番茄“组学”方法产生的大量数据,并强调了为分析茄科植物的组织、功能和进化而建立一个计算工作平台的努力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3db7/2246074/b41b3d8ec7f4/IJPG2008-820274.001.jpg

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