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赋予小麦对多种真菌病原体抗性的基因Lr34/Yr18/Pm38的基因特异性标记。

Gene-specific markers for the wheat gene Lr34/Yr18/Pm38 which confers resistance to multiple fungal pathogens.

作者信息

Lagudah Evans S, Krattinger Simon G, Herrera-Foessel Sybil, Singh Ravi P, Huerta-Espino Julio, Spielmeyer Wolfgang, Brown-Guedira Gina, Selter Liselotte L, Keller Beat

机构信息

CSIRO Plant Industry, GPO Box 1600, Canberra, ACT 2601, Australia.

出版信息

Theor Appl Genet. 2009 Sep;119(5):889-98. doi: 10.1007/s00122-009-1097-z. Epub 2009 Jul 4.

Abstract

The locus Lr34/Yr18/Pm38 confers partial and durable resistance against the devastating fungal pathogens leaf rust, stripe rust, and powdery mildew. In previous studies, this broad-spectrum resistance was shown to be controlled by a single gene which encodes a putative ATP-binding cassette transporter. Alleles of resistant and susceptible cultivars differed by only three sequence polymorphisms and the same resistance haplotype was found in the three independent breeding lineages of Lr34/Yr18/Pm38. Hence, we used these conserved sequence polymorphisms as templates to develop diagnostic molecular markers that will assist selection for durable multi-pathogen resistance in breeding programs. Five allele-specific markers (cssfr1-cssfr5) were developed based on a 3 bp deletion in exon 11 of the Lr34-gene, and one marker (cssfr6) was derived from a single nucleotide polymorphism in exon 12. Validation of reference genotypes, well characterized for the presence or absence of the Lr34/Yr18/Pm38 resistance locus, demonstrated perfect diagnostic values for the newly developed markers. By testing the new markers on a larger set of wheat cultivars, a third Lr34 haplotype, not described so far, was discovered in some European winter wheat and spelt material. Some cultivars with uncertain Lr34 status were re-assessed using the newly derived markers. Unambiguous identification of the Lr34 gene aided by the new markers has revealed that some wheat cultivars incorrectly postulated as having Lr34 may possess as yet uncharacterised loci for adult plant leaf and stripe rust resistance.

摘要

Lr34/Yr18/Pm38位点赋予对毁灭性真菌病原体叶锈病、条锈病和白粉病的部分持久抗性。在先前的研究中,这种广谱抗性被证明由一个编码假定ATP结合盒转运蛋白的单基因控制。抗性和感病品种的等位基因仅在三个序列多态性上存在差异,并且在Lr34/Yr18/Pm38的三个独立育种谱系中发现了相同的抗性单倍型。因此,我们以这些保守的序列多态性为模板开发诊断分子标记,以协助在育种计划中选择持久的多病原体抗性。基于Lr34基因第11外显子中的3 bp缺失开发了五个等位基因特异性标记(cssfr1 - cssfr5),一个标记(cssfr6)源自第12外显子中的单核苷酸多态性。对具有Lr34/Yr18/Pm38抗性位点存在与否特征明确的参考基因型进行验证,证明了新开发标记的完美诊断价值。通过在更大一组小麦品种上测试新标记,在一些欧洲冬小麦和斯佩尔特小麦材料中发现了迄今未描述的第三种Lr34单倍型。使用新衍生的标记对一些Lr34状态不确定的品种进行了重新评估。新标记辅助下对Lr34基因的明确鉴定表明,一些被错误假定具有Lr34的小麦品种可能拥有尚未鉴定的成年植物叶锈病和条锈病抗性位点。

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