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小麦-节节麦易位系的细胞遗传学鉴定及分子标记开发,该易位系具有抗白粉病特性。

Cytogenetic identification and molecular marker development of a novel wheat-Thinopyrum ponticum translocation line with powdery mildew resistance.

机构信息

State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology, The Innovative Academy of Seed Design, Chinese Academy of Sciences, Beijing, 100101, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Theor Appl Genet. 2022 Jun;135(6):2041-2057. doi: 10.1007/s00122-022-04092-1. Epub 2022 Apr 22.

Abstract

A new wheat-Thinopyrum ponticum translocation line with excellent powdery mildew resistance was produced, and alien-specific PCR markers and FISH probes were developed by SLAF-seq. Powdery mildew is one of the most threatening diseases in wheat production. Thinopyrum ponticum (Podp.) Barkworth and D. R. Dewey, as a wild relative, has been used for wheat genetic improvement for the better part of a century. In view of the good powdery mildew resistance of Th. ponticum, we have been working to transfer the resistance genes from Th. ponticum to wheat by creating translocation lines. In this study, a new wheat-Th. ponticum translocation line with excellent resistance and agronomic performance was developed and through seedling disease evaluation, gene postulation and diagnostic marker analysis proved to carry a novel Pm gene derived from Th. ponticum. Cytogenetic analysis revealed that a small alien segment was translocated to the terminal of chromosome 1D to form new translocation TTh-1DS·1DL chromosome. The translocation breakpoint was determined to lie in 21.5 Mb region of chromosome 1D by using Wheat660K SNP array analysis. Based on specific-locus amplified fragment sequencing (SLAF-seq) technology, eight molecular markers and one repetitive sequence probe were developed, which were specific for Th. ponticum. Fortunately, the probe could be used in distinguishing six alien chromosome pairs in partial amphiploid Xiaoyan 7430 by fluorescence in situ hybridization (FISH). Furthermore, a Thinopyrum-specific oligonucleotide probe was designed depending on the sequence information of the FISH probe. The novel translocation line could be used in wheat disease resistance breeding, and these specific markers and probes will enable wheat breeders to rapidly trace the alien genome with the novel Pm gene(s).

摘要

一个具有优异抗白粉病的新型小麦-节节麦易位系被成功创制,并且通过 SLAF-seq 开发了种特异性 PCR 标记和 FISH 探针。白粉病是小麦生产中最具威胁性的病害之一。节节麦(Podp.)Barkworth 和 D. R. Dewey 作为一种野生近缘种,在过去的一个世纪中一直被用于小麦遗传改良。鉴于节节麦具有良好的抗白粉病能力,我们一直在努力通过创制易位系将其抗性基因从节节麦转移到小麦中。在这项研究中,创制了一个具有优异抗性和农艺表现的新型小麦-节节麦易位系,通过幼苗期病害鉴定、基因推测和诊断性标记分析,证明其携带一个源自节节麦的新的 Pm 基因。细胞遗传学分析表明,一个小的外源片段易位到 1D 染色体的末端,形成了新的易位 TTh-1DS·1DL 染色体。利用小麦 660K SNP 芯片分析,确定易位断点位于 1D 染色体的 21.5 Mb 区域。基于特异位点扩增片段测序(SLAF-seq)技术,开发了 8 个分子标记和 1 个重复序列探针,这些标记和探针均特异于节节麦。幸运的是,该探针可用于荧光原位杂交(FISH)区分部分双二倍体小偃 7430 中的 6 对外源染色体。此外,根据 FISH 探针的序列信息,设计了一个节节麦特异性寡核苷酸探针。该新型易位系可用于小麦抗病育种,这些特异标记和探针将使小麦育种家能够快速追踪携带有新 Pm 基因的外源基因组。

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