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精确鉴定携带抗小麦条锈病基因的中间偃麦草易位系 Z4 及其衍生后代中的染色体。

Precise identification of wheat - Thinopyrum intermedium translocation chromosomes carrying resistance to wheat stripe rust in line Z4 and its derived progenies.

机构信息

a School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu 610054, China.

b Crop Research Institute, Sichuan Academy of Agricultural Sciences, Chengdu 610066, Sichuan, China.

出版信息

Genome. 2018 Mar;61(3):177-185. doi: 10.1139/gen-2017-0229. Epub 2018 Feb 22.

DOI:10.1139/gen-2017-0229
PMID:29470932
Abstract

The wheat - Thinopyrum intermedium derived line Z4 has displayed novel and effective stripe rust resistance for over 40 years. This study aimed to precisely identify the chromosome constitution of line Z4 and determine the stripe rust resistance contribution using multicolor fluorescent in situ hybridization (FISH) and molecular marker analysis. The results indicated that the Z4 line (2n = 44) contained two pairs of non-Robertsonian translocations without the 3A chromosomes of wheat. FISH karyotypes of F progenies derived from crosses between Z4 and MY11 indicated that the transmission of the translocated chromosomes appeared normal and the number of wheat chromosomes 3A and 3D frequently varied. The FISH signal distribution of a new repetitive probe, named Oligo-3A1, confirmed the physical breakage points on chromosome 3AL incorporated into translocated chromosomes. PLUG markers revealed the breakage points on chromosomes 3A, 7J, and 3D invloved in the translocated chromosomes, and they were designated as T3DS-3AS.3AL-7JS and T3AL-7JS.7JL. Stripe rust resistances surveys indicated that the proximal region of 7JS or 7JL may confer the resistance at the adult plant stage. The precise characterization of the chromosome complements of wheat - Th. intermedium Z4 and derived progenies has demonstrated the importance of combining cytogenetic and molecular approaches in the genomics era for further wheat genetic manipulation and breeding purposes.

摘要

小麦-中间偃麦草衍生系 Z4 已显示出超过 40 年的新型有效条锈病抗性。本研究旨在通过多色荧光原位杂交(FISH)和分子标记分析,精确鉴定 Z4 系的染色体组成,并确定条锈病抗性的贡献。结果表明,Z4 系(2n=44)含有两对非罗伯逊易位,不含小麦的 3A 染色体。Z4 与 MY11 杂交产生的 F 代的 FISH 核型表明,易位染色体的传递似乎正常,小麦染色体 3A 和 3D 的数量经常变化。新的重复探针 Oligo-3A1 的 FISH 信号分布证实了掺入易位染色体的 3AL 染色体的物理断裂点。PLUG 标记揭示了易位染色体上 3A、7J 和 3D 染色体的断裂点,它们被命名为 T3DS-3AS.3AL-7JS 和 T3AL-7JS.7JL。条锈病抗性调查表明,7JS 或 7JL 的近端区域可能在成株期赋予抗性。小麦-中间偃麦草 Z4 及其衍生系的染色体组成的精确表征表明,在基因组学时代,结合细胞遗传学和分子方法对于进一步的小麦遗传操作和育种目的非常重要。

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