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赋予对秆锈病抗性的大麦丝氨酸/苏氨酸激酶基因Rpg1属于一个基因家族,该家族还有其他五个编码激酶结构域的成员。

The barley serine/threonine kinase gene Rpg1 providing resistance to stem rust belongs to a gene family with five other members encoding kinase domains.

作者信息

Brueggeman R, Drader T, Kleinhofs A

机构信息

Department of Crop and Soil Sciences, Washington State University, Pullman, WA 99164-6420, USA.

出版信息

Theor Appl Genet. 2006 Oct;113(6):1147-58. doi: 10.1007/s00122-006-0374-3. Epub 2006 Aug 3.

Abstract

The barley (Hordeum vulgare L.) stem rust (Puccinia graminis f. sp. tritici) resistance gene Rpg1 encodes a serine/threonine protein kinase with two tandem kinase domains. The Rpg1 gene family was identified from the cv. Morex and consists of five additional members with divergent homology to Rpg1. All family members encode serine/threonine kinase-like proteins with at least one predicted catalytically active kinase domain. The five family members were sequenced from cDNA and genomic DNA and genetically mapped. The family member most closely related to Rpg1, ABC1037, is located on chromosome 1(7H) bin 01, very near (approximately 50 kb) but not co-segregating with Rpg1. Two others, ABC1036 and ABC1040, are closely related to each other and tightly linked on chromosome 7(5H) bin 07. ABC1041 mapped to chromosome 7(5H) bin 13, tightly linked to the rust resistance genes rpg4 and Rpg5 providing resistance to barley stem rust pathotype QCC and rye stem rust pathotype 92-MN-90, respectively, but segregated away in a high-resolution population. ABC1063 was localized to chromosome 4(4H) bin 6. An interesting Rpg1 allele that appears to be the result of unequal recombination between Rpg1 and ABC1037 was characterized. No known resistance loci cosegregated with any family members, however characterization of the Rpg1 family has provided insight into the evolution of this novel gene family and may present tools for understanding the functional domains of Rpg1. The genetic mapping, gene structures, and analysis of amino-acid sequences of the Rpg1 gene family members are presented.

摘要

大麦(Hordeum vulgare L.)抗秆锈病基因Rpg1编码一种具有两个串联激酶结构域的丝氨酸/苏氨酸蛋白激酶。从Morex品种中鉴定出Rpg1基因家族,该家族还包括另外五个与Rpg1具有不同同源性的成员。所有家族成员均编码丝氨酸/苏氨酸激酶样蛋白,且至少有一个预测具有催化活性的激酶结构域。对这五个家族成员进行了cDNA和基因组DNA测序,并进行了遗传定位。与Rpg1关系最密切的家族成员ABC1037位于1号染色体(7H)的01号染色体臂,与Rpg1非常接近(约50 kb)但不共分离。另外两个成员ABC1036和ABC1040彼此密切相关,并紧密连锁在7号染色体(5H)的07号染色体臂上。ABC1041定位到7号染色体(5H)的13号染色体臂,与抗锈病基因rpg4和Rpg5紧密连锁,分别对大麦秆锈病菌生理小种QCC和黑麦秆锈病菌生理小种92 - MN - 90具有抗性,但在一个高分辨率群体中发生了分离。ABC1063定位于4号染色体(4H)的6号染色体臂。鉴定出一个有趣的Rpg1等位基因,它似乎是Rpg1与ABC1037之间不等位重组的结果。没有已知的抗性位点与任何家族成员共分离,然而,Rpg1家族的特征分析为这个新基因家族的进化提供了见解,并可能为理解Rpg1的功能结构域提供工具。本文介绍了Rpg1基因家族成员的遗传定位、基因结构和氨基酸序列分析。

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