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水稻R基因的分离与特性分析:水稻和玉米不同进化路径的证据

Isolation and characterization of rice R genes: evidence for distinct evolutionary paths in rice and maize.

作者信息

Hu J, Anderson B, Wessler S R

机构信息

Department of Botany and Genetics, University of Georgia, Athens 30602, USA.

出版信息

Genetics. 1996 Mar;142(3):1021-31. doi: 10.1093/genetics/142.3.1021.

Abstract

R and B genes and their homologues encode basic helix-loop-helix (bHLH) transcriptional activators that regulate the anthocyanin biosynthetic pathway in flowering plants. In maize, R/B genes comprise a very small gene family whose organization reflects the unique evolutionary history and genome architecture of maize. To know whether the organization of the R gene family could provide information about the origins of the distantly related grass rice, we characterized members of the R gene family from rice Oryza saliva. Despite being a true diploid, O. sativa has at least two R genes. An active homologue (Ra) with extensive homology with other R genes is located at a position on chromosome 4 previously shown to be in synteny with regions of maize chromosomes 2 and 10 that contain the B and R loci, respectively. A second rice R gene (Rb) of undetermined function was identified on chromosome 1 and found to be present only in rice species with AA genomes. All non-AA species have but one R gene that is Ra-like. These data suggest that the common ancestor shared by maize and rice had a single R gene and that the small R gene families of grasses have arisen recently and independently.

摘要

R基因和B基因及其同源基因编码碱性螺旋-环-螺旋(bHLH)转录激活因子,这些因子调控开花植物中的花青素生物合成途径。在玉米中,R/B基因构成一个非常小的基因家族,其结构反映了玉米独特的进化历史和基因组结构。为了了解R基因家族的结构是否能为远缘禾本科植物水稻的起源提供信息,我们对水稻(Oryza saliva)R基因家族的成员进行了特征分析。尽管水稻是真正的二倍体,但它至少有两个R基因。一个与其他R基因具有广泛同源性的活性同源基因(Ra)位于第4号染色体上的一个位置,该位置先前已显示与玉米第2号和第10号染色体上分别包含B和R位点的区域存在共线性关系。在第1号染色体上鉴定出了第二个功能未明的水稻R基因(Rb),并且发现它仅存在于具有AA基因组的水稻品种中。所有非AA基因组的品种只有一个类似Ra的R基因。这些数据表明,玉米和水稻的共同祖先有一个单一的R基因,并且禾本科植物的小R基因家族是最近独立出现的。

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