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两个多毛番茄种质对番茄白粉菌抗性的鉴定与定位:番茄6号染色体上两个抗白粉病基因紧密连锁的证据

Characterization and mapping of resistance to Oidium lycopersicum in two Lycopersicon hirsutum accessions: evidence for close linkage of two Ol-genes on chromosome 6 of tomato.

作者信息

Huang C C, Hoefs-Van De Putte P M, Haanstra-Van Der Meer J G, Meijer-Dekens F, Lindhout P

机构信息

The Graduate School of Experimental Plant Sciences, Laboratory of Plant Breeding, Wageningen University, PO Box 386, 6700 AJ Wageningen, The Netherlands.

出版信息

Heredity (Edinb). 2000 Dec;85(Pt 6):511-20. doi: 10.1046/j.1365-2540.2000.00770.x.

DOI:10.1046/j.1365-2540.2000.00770.x
PMID:11240617
Abstract

The cultivated tomato is susceptible to powdery mildew (Oidium lycopersicum). Several accessions of wild species are resistant. In this study we describe (i) the genetics and mapping of resistance to O. lycopersicum in G1.1290, one of the resistant accessions in Lycopersicon hirsutum, (ii) fine mapping of Ol-1 originated from L. hirsutum G1.1560, another resistant accession of L. hirsutum, and (iii) tests of allelism for resistance in G1.1290 and G1.1560. Initially, it is demonstrated that the resistance in G1.1290 to O. lycopersicum is controlled by an incompletely dominant gene, designated Ol-3. By using an advanced breeding line (ABL) containing introgression fragment(s) from G1.1290, Ol-3 was found to be associated with several RFLP and SCAR markers on chromosome 6. By using these markers, Ol-3 was mapped between markers TG25/SCAF10 and H9A11 on chromosome 6. Secondly, after testing some F3 lines and their progenies from the cross between L. esculentum cv Moneymaker and L. hirsutum G1.1560, we provided more evidence for the map position of Ol-1 to lie between SCAF10 and H9A11, indicating that Ol-1 and Ol-3 are in the same chromosome region. Thirdly, although allelism tests could not discriminate between Ol-1 and Ol-3, (indirect) evidence suggested that these two genes are not identical. They might instead represent functional genes of a cluster of Ol-homologues.

摘要

栽培番茄对白粉病(番茄粉孢菌)敏感。一些野生种的种质具有抗性。在本研究中,我们描述了:(i)多毛番茄的抗性种质之一G1.1290对番茄粉孢菌抗性的遗传及定位;(ii)源自多毛番茄另一个抗性种质G1.1560的Ol-1的精细定位;以及(iii)G1.1290和G1.1560抗性的等位性测试。首先,证明了G1.1290对番茄粉孢菌的抗性由一个不完全显性基因控制,命名为Ol-3。通过使用含有来自G1.1290渐渗片段的高级育种系(ABL),发现Ol-3与6号染色体上的几个RFLP和SCAR标记相关。利用这些标记,将Ol-3定位在6号染色体上的标记TG25/SCAF10和H9A11之间。其次,在测试了一些来自栽培番茄品种Money maker和多毛番茄G1.1560杂交的F3株系及其后代后,我们为Ol-1的图谱位置提供了更多证据表明其位于SCAF10和H9A11之间,这表明Ol-1和Ol-3位于同一染色体区域。第三,尽管等位性测试无法区分Ol-1和Ol-3,但(间接)证据表明这两个基因并不相同。相反,它们可能代表一组Ol同源物的功能基因。

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