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茄属植物中的等位基因挖掘:在匍匐茎茄中鉴定出Rpi-blb1的保守同源基因。

Allele mining in Solanum: conserved homologues of Rpi-blb1 are identified in Solanum stoloniferum.

作者信息

Wang Miqia, Allefs Sjefke, van den Berg Ronald G, Vleeshouwers Vivianne G A A, van der Vossen Edwin A G, Vosman Ben

机构信息

Plant Research International BV, Wageningen University and Research Centre, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.

出版信息

Theor Appl Genet. 2008 May;116(7):933-43. doi: 10.1007/s00122-008-0725-3. Epub 2008 Feb 15.

Abstract

Allele mining facilitates the discovery of novel resistance (R) genes that can be used in breeding programs and sheds light on the evolution of R genes. Here we focus on two R genes, Rpi-blb1 and Rpi-blb2, originally derived from Solanum bulbocastanum. The Rpi-blb1 gene is part of a cluster of four paralogues and is flanked by RGA1-blb and RGA3-blb. Highly conserved RGA1-blb homologues were discovered in all the tested tuber-bearing (TB) and non-tuber-bearing (NTB) Solanum species, suggesting RGA1-blb was present before the divergence of TB and NTB Solanum species. The frequency of the RGA3-blb gene was much lower. Interestingly, highly conserved Rpi-blb1 homologues were discovered not only in S. bulbocastanum but also in Solanum stoloniferum that is part of the series Longipedicellata. Resistance assays and genetic analyses in several F1 populations derived from the relevant late blight resistant parental genotypes harbouring the conserved Rpi-blb1 homologues, indicated the presence of four dominant R genes, designated as Rpi-sto1, Rpi-plt1, Rpi-pta1 and Rpi-pta2. Furthermore, Rpi-sto1 and Rpi-plt1 resided at the same position on chromosome VIII as Rpi-blb1 in S. bulbocastanum. Segregation data also indicated that an additional unknown late blight resistance gene was present in three populations. In contrast to Rpi-blb1, no homologues of Rpi-blb2 were detected in any material examined. Hypotheses are proposed to explain the presence of conserved Rpi-blb1 homologues in S. stoloniferum. The discovery of conserved homologues of Rpi-blb1 in EBN 2 tetraploid species offers the possibility to more easily transfer the late blight resistance genes to potato varieties by classical breeding.

摘要

等位基因挖掘有助于发现可用于育种计划的新型抗性(R)基因,并揭示R基因的进化。在这里,我们重点关注最初来自阳芋的两个R基因,即Rpi-blb1和Rpi-blb2。Rpi-blb1基因是四个旁系同源基因簇的一部分,两侧是RGA1-blb和RGA3-blb。在所有测试的块茎类(TB)和非块茎类(NTB)茄属物种中都发现了高度保守的RGA1-blb同源物,这表明RGA1-blb在TB和NTB茄属物种分化之前就已存在。RGA3-blb基因的频率要低得多。有趣的是,不仅在阳芋中发现了高度保守的Rpi-blb1同源物,而且在长梗组的匍匐茎茄中也发现了。对来自含有保守Rpi-blb1同源物的相关晚疫病抗性亲本基因型的几个F1群体进行的抗性测定和遗传分析表明,存在四个显性R基因,分别命名为Rpi-sto1、Rpi-plt1、Rpi-pta1和Rpi-pta2。此外,Rpi-sto1和Rpi-plt1与阳芋中Rpi-blb1位于第八条染色体的同一位置。分离数据还表明,在三个群体中存在另一个未知的晚疫病抗性基因。与Rpi-blb1不同,在任何检测材料中均未检测到Rpi-blb2的同源物。提出了一些假说来解释匍匐茎茄中保守的Rpi-blb1同源物的存在。在EBN 2四倍体物种中发现Rpi-blb1的保守同源物,为通过传统育种更容易地将晚疫病抗性基因转移到马铃薯品种中提供了可能性。

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