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大豆[Glycine max (L.) Merr.]中的大型均匀基因组区域(等密度区)

Large homogeneous genome regions (isochores) in soybean [glycine max (L.) merr].

作者信息

Woody J L, Beavis W, Shoemaker R C

机构信息

Interdepartmental Genetics Program, Iowa State University Ames, IA, USA.

出版信息

Front Genet. 2012 Jun 1;3:98. doi: 10.3389/fgene.2012.00098. eCollection 2012.

Abstract

The landscape of plant genomes, while slowly being characterized and defined, is still composed primarily of regions of undefined function. Many eukaryotic genomes contain isochore regions, mosaics of homogeneous GC content that can abruptly change from one neighboring isochore to the next. Isochores are broken into families that are characterized by their GC levels. We identified 4,339 compositionally distinct domains and 331 of these were identified as long homogeneous genome regions (LHGRs). We assigned these to four families based on finite mixture models of GC content. We then characterized each family with respect to exon length, gene content, and transposable elements. The LHGR pattern of soybeans is unique in that while the majority of the genes within LHGRs are found within a single LHGR family with a narrow GC range (Family B), that family is not the highest in GC content as seen in vertebrates and invertebrates. Instead Family B has a mean GC content of 35%. The range of GC content for all LHGRs is 16-59% GC which is a larger range than what is typical of vertebrates. This is the first study in which LHGRs have been identified in soybeans and the functions of the genes within the LHGRs have been analyzed.

摘要

植物基因组的情况,虽然正在慢慢地得到表征和界定,但仍然主要由功能未明的区域组成。许多真核生物基因组包含等密度区,即具有均匀GC含量的镶嵌体,其GC含量可从一个相邻等密度区到下一个相邻等密度区突然改变。等密度区被分为不同的家族,这些家族以其GC水平为特征。我们鉴定出4339个组成上不同的结构域,其中331个被鉴定为长的均匀基因组区域(LHGR)。我们根据GC含量的有限混合模型将这些区域分为四个家族。然后,我们从外显子长度、基因含量和转座元件方面对每个家族进行了表征。大豆的LHGR模式是独特的,因为虽然LHGR内的大多数基因都存在于一个具有狭窄GC范围的单一LHGR家族(家族B)中,但该家族的GC含量并不是脊椎动物和无脊椎动物中最高的。相反,家族B的平均GC含量为35%。所有LHGR的GC含量范围为16%-59%,这一比脊椎动物的典型范围更大。这是首次在大豆中鉴定出LHGR并分析了LHGR内基因功能的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/630b/3365285/a3cdde4791e1/fgene-03-00098-g001.jpg

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