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来自4AgS染色体的一个新的抗白粉病基因座的物理图谱构建

Physical mapping of a new powdery mildew resistance locus from chromosome 4AgS.

作者信息

Yang Guotang, Deng Pingchuan, Ji Wanquan, Fu Shulan, Li Hongwei, Li Bin, Li Zhensheng, Zheng Qi

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, China.

College of Advanced Agriculture Sciences, University of Chinese Academy of Sciences, Beijing, China.

出版信息

Front Plant Sci. 2023 Feb 23;14:1131205. doi: 10.3389/fpls.2023.1131205. eCollection 2023.

Abstract

(Podp.) Barkworth and D.R. Dewey is a decaploid species that has served as an important genetic resource for improving wheat for the better part of a century. The wheat- 4Ag (4D) disomic substitution line Blue 58, which was obtained following the distant hybridization between and common wheat, has been stably resistant to powdery mildew under field conditions for more than 40 years. The transfer of 4Ag into the susceptible wheat cultivar Xiaoyan 81 resulted in powdery mildew resistance, indicating the alien chromosome includes the resistance locus. Irradiated Blue 58 pollen were used for the pollination of the recurrent parent Xiaoyan 81, which led to the development of four stable wheat- 4Ag translocation lines with diverse alien chromosomal segments. The assessment of powdery mildew resistance showed that translocation line L1 was susceptible, but the other three translocation lines (WTT139, WTT146, and WTT323) were highly resistant. The alignment of 81 specific-locus amplified fragments to the genome revealed that 4Ag originated from a group 4 chromosome. The corresponding physical positions of every 4Ag-derived fragment were determined according to a cytogenetic analysis, the amplification of specific markers, and a sequence alignment. Considering the results of the evaluation of disease resistance, the locus was mapped to the 3.79-97.12 Mb region of the short arm of chromosome 4Ag. Because of its durability, this newly identified locus from a group 4 chromosome of may be important for breeding wheat varieties with broad-spectrum disease resistance.

摘要

(脚注)巴克沃思和D.R. 杜威是一个十倍体物种,在近一个世纪的大部分时间里一直是改良小麦的重要遗传资源。通过与普通小麦远缘杂交获得的小麦-4Ag(4D)二体代换系蓝58,在田间条件下对白粉病的抗性已稳定超过40年。将4Ag导入感病小麦品种小偃81后获得了对白粉病的抗性,表明这条外源染色体包含抗性位点。用经辐照的蓝58花粉对轮回亲本小偃81进行授粉,培育出了4个具有不同外源染色体片段的稳定的小麦-4Ag易位系。白粉病抗性评估表明,易位系L1感病,但其他3个易位系(WTT139、WTT146和WTT323)高抗。81个特异位点扩增片段与4Ag基因组比对表明,4Ag起源于4号染色体组。根据细胞遗传学分析、特异标记扩增和序列比对确定了每个4Ag衍生片段的相应物理位置。综合抗病性评价结果,将抗病基因位点定位到4Ag染色体短臂的3.79 - 97.12 Mb区域。由于其抗性持久,这个新鉴定出的来自4Ag 4号染色体组的抗病基因位点可能对培育广谱抗病小麦品种具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19b1/9995812/ce35d4d628c7/fpls-14-1131205-g001.jpg

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