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对从小麦族簇毛麦转移至小麦且无产量损失的抗白粉病和抗条锈病基因Pm5V/Yr5V进行精细定位。

Fine mapping of powdery mildew and stripe rust resistance genes Pm5V/Yr5V transferred from Dasypyrum villosum into wheat without yield penalty.

作者信息

Zhang Ruiqi, Lu Chuntian, Meng Xiangru, Fan Yali, Du Jie, Liu Runran, Feng Yigao, Xing Liping, Cápal Petr, Holušová Kateřina, Doležel Jaroslav, Wang Yiwei, Mu Huanqing, Sun Bingxiao, Hou Fu, Yao Ruonan, Xiong Chuanxi, Wang Yang, Chen Peidu, Cao Aizhong

机构信息

College of Agronomy of Nanjing Agricultural University/National Key Laboratory of Crop Genetics and Germplasm Enhancement /JCIC-MCP, Nanjing, 210095, People's Republic of China.

Centre of the Region Haná for Biotechnological and Agricultural Research, Institute of Experimental Botany of the Czech Academy of Sciences, Šlechtitelů 31, 77900, Olomouc, Czech Republic.

出版信息

Theor Appl Genet. 2022 Oct;135(10):3629-3642. doi: 10.1007/s00122-022-04206-9. Epub 2022 Aug 29.

Abstract

The novel wheat powdery mildew and stripe rust resistance genes Pm5V/Yr5V are introgressed from Dasypyrum villosum and fine mapped to a narrowed region in 5VS, and their effects on yield-related traits were characterized. The powdery mildew and stripe rust seriously threaten wheat production worldwide. Dasypyrum villosum (2n = 2x = 14, VV), a relative of wheat, is a valuable resource of resistance genes for wheat improvement. Here, we describe a platform for rapid introgression of the resistance genes from D. villosum into the wheat D genome. A complete set of new wheat-D. villosum V (D) disomic substitution lines and 11 D/V Robertsonian translocation lines are developed and characterized by molecular cytogenetic method. A new T5DL·5V#5S line NAU1908 shows resistance to both powdery mildew and stripe rust, and the resistances associated with 5VS are confirmed to be conferred by seedling resistance gene Pm5V and adult-plant resistance gene Yr5V, respectively. We flow-sort chromosome arm 5VS and sequence it using the Illumina NovaSeq 6000 system that allows us to generate 5VS-specific markers for genetic mapping of Pm5V/Yr5V. Fine mapping shows that Pm5V and Yr5V are closely linked and the location is narrowed to an approximately 0.9 Mb region referencing the sequence of Chinese Spring 5DS. In this region, a NLR gene in scaffold 24,874 of 5VS orthologous to TraesCS5D02G044300 is the most likely candidate gene for Pm5V. Soft- and hard-grained T5DL·5V#5S introgressions confer resistance to both powdery mildew and stripe rust in diverse wheat genetic backgrounds without yield penalty. Meanwhile, significant decrease in plant height and increase in yield were observed in NIL-5DL·5V#5S compared with that in NIL-5DL·5DS. These results indicate that Pm5V/Yr5V lines might have the potential value to facilitate wheat breeding for disease resistance.

摘要

从小麦族簇毛麦中渐渗的新型抗小麦白粉病和条锈病基因Pm5V/Yr5V被精细定位到5VS上的一个狭窄区域,并对其与产量相关性状的影响进行了表征。白粉病和条锈病严重威胁着全球小麦生产。小麦族簇毛麦(2n = 2x = 14,VV)是小麦的近缘种,是改良小麦抗性基因的宝贵资源。在此,我们描述了一个将簇毛麦抗性基因快速渐渗到小麦D基因组的平台。通过分子细胞遗传学方法,开发并鉴定了一套完整的新型小麦-簇毛麦V(D)二体代换系和11个D/V罗伯逊易位系。一个新的T5DL·5V#5S品系NAU1908对白粉病和条锈病均表现出抗性,并且与5VS相关的抗性分别被证实是由苗期抗性基因Pm5V和成株期抗性基因Yr5V赋予的。我们通过流式细胞术分选5VS染色体臂,并使用Illumina NovaSeq 6000系统对其进行测序,这使我们能够生成用于Pm5V/Yr5V基因定位的5VS特异性标记。精细定位表明,Pm5V和Yr5V紧密连锁,并且参考中国春5DS序列,其定位范围缩小到约0.9 Mb区域。在该区域,5VS支架24,874中与TraesCS5D02G044300直系同源的一个NLR基因最有可能是Pm5V的候选基因。软质和硬质的T5DL·5V#5S渐渗系在不同小麦遗传背景下对白粉病和条锈病均具有抗性,且不影响产量。同时,与NIL-5DL·5DS相比,NIL-5DL·5V#5S的株高显著降低,产量增加。这些结果表明,Pm5V/Yr5V品系可能具有促进小麦抗病育种的潜在价值。

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