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1
Structure and evolution of the rp1 complex conferring rust resistance in maize.赋予玉米抗锈病能力的rp1复合体的结构与进化
Annu Rev Phytopathol. 1997;35:293-310. doi: 10.1146/annurev.phyto.35.1.293.
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Advances in the molecular genetic analysis of the flax-flax rust interaction.亚麻-亚麻锈菌互作的分子遗传分析进展
Annu Rev Phytopathol. 1997;35:271-91. doi: 10.1146/annurev.phyto.35.1.271.
3
Homologues of the Cf-9 disease resistance gene (Hcr9s) are present at multiple loci on the short arm of tomato chromosome 1.Cf-9抗病基因(Hcr9s)的同源基因存在于番茄1号染色体短臂的多个位点上。
Mol Plant Microbe Interact. 1999 Feb;12(2):93-102. doi: 10.1094/MPMI.1999.12.2.93.
4
The tomato Cf-5 disease resistance gene and six homologs show pronounced allelic variation in leucine-rich repeat copy number.番茄Cf-5抗病基因及其六个同源基因在富含亮氨酸重复序列拷贝数上表现出明显的等位变异。
Plant Cell. 1998 Nov;10(11):1915-25. doi: 10.1105/tpc.10.11.1915.
5
Intragenic recombination and diversifying selection contribute to the evolution of downy mildew resistance at the RPP8 locus of Arabidopsis.基因内重组和多样化选择有助于拟南芥RPP8基因座上霜霉病抗性的进化。
Plant Cell. 1998 Nov;10(11):1861-74. doi: 10.1105/tpc.10.11.1861.
6
Three genes of the Arabidopsis RPP1 complex resistance locus recognize distinct Peronospora parasitica avirulence determinants.拟南芥RPP1复合抗性位点的三个基因识别不同的寄生霜霉无毒决定子。
Plant Cell. 1998 Nov;10(11):1847-60. doi: 10.1105/tpc.10.11.1847.
7
Receptor-like genes in the major resistance locus of lettuce are subject to divergent selection.生菜主要抗性位点中的类受体基因受到趋异选择。
Plant Cell. 1998 Nov;10(11):1833-46. doi: 10.1105/tpc.10.11.1833.
8
The major resistance gene cluster in lettuce is highly duplicated and spans several megabases.生菜中的主要抗性基因簇高度重复,跨越几个兆碱基。
Plant Cell. 1998 Nov;10(11):1817-32. doi: 10.1105/tpc.10.11.1817.
9
Genetic and molecular analysis of tomato Cf genes for resistance to Cladosporium fulvum.番茄抗叶霉病 Cf 基因的遗传与分子分析
Philos Trans R Soc Lond B Biol Sci. 1998 Sep 29;353(1374):1413-24. doi: 10.1098/rstb.1998.0296.
10
Identification and Ds-tagged isolation of a new gene at the Cf-4 locus of tomato involved in disease resistance to Cladosporium fulvum race 5.番茄Cf-4基因座上一个参与抗番茄叶霉病菌5号生理小种的新基因的鉴定及Ds标签分离
Plant J. 1998 May;14(4):401-11. doi: 10.1046/j.1365-313x.1998.00135.x.

番茄Cf-9植物抗病基因家族不同簇之间的重组

Recombination between diverged clusters of the tomato Cf-9 plant disease resistance gene family.

作者信息

Parniske M, Jones J D

机构信息

The Sainsbury Laboratory, John Innes Centre, Colney Lane, Norwich NR4 7UH, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 1999 May 11;96(10):5850-5. doi: 10.1073/pnas.96.10.5850.

DOI:10.1073/pnas.96.10.5850
PMID:10318973
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC21949/
Abstract

The tomato Cf-4 and Cf-9 genes are the founder members of a large gene family of homologues of Cladosporium fulvum resistance gene Cf-9 (Hcr9 genes), several of which confer resistance against C. fulvum through recognition of different pathogen-encoded avirulence determinants. Three loci of tandemly repeated Hcr9 genes-Southern Cross (SC), Milky Way (MW), and Northern Lights (NL)-are located on the short arm of tomato chromosome 1. Comparisons between 2 SC-Hcr9s, 11 from MW, and 5 from NL implicated sequence exchange between gene family members in their evolution. The extent to which novel variants can be generated by recombination depends on the degree of sequence polymorphism available within the gene family. Here we show that physical separation of Hcr9 genes can be associated with elevated sequence divergence. Two diverged subclasses of Hcr9s could be defined. These are physically separated from each other, with members of one class exclusively residing at Northern Lights. One exceptional Hcr9 at Northern Lights carried sequence features specific for Hcr9s at other loci, suggesting a recent transfer of this gene by an interlocus recombination event. As members of diverged subclasses are brought into physical vicinity within a tandem repeat, a larger spectrum of sequence variants can potentially be generated by subsequent interhomologue sequence exchange.

摘要

番茄Cf-4和Cf-9基因是番茄叶霉病抗性基因Cf-9(Hcr9基因)同源物的一个大基因家族的创始成员,其中几个基因通过识别不同的病原体编码无毒决定簇来赋予对叶霉病的抗性。串联重复的Hcr9基因的三个位点——南十字座(SC)、银河系(MW)和北极光(NL)——位于番茄1号染色体的短臂上。对2个SC-Hcr9、11个MW-Hcr9和5个NL-Hcr9的比较表明,基因家族成员之间在进化过程中发生了序列交换。重组能够产生新变体的程度取决于基因家族内可用的序列多态性程度。在这里,我们表明Hcr9基因的物理分离可能与序列分歧增加有关。可以定义两个分化的Hcr9亚类。它们在物理上相互分离,其中一类成员仅位于北极光位点。北极光位点的一个特殊Hcr9携带了其他位点Hcr9特有的序列特征,表明该基因最近通过位点间重组事件发生了转移。当分化亚类的成员在串联重复中在物理上靠近时,随后的同源序列交换可能会产生更大范围的序列变体。