Hou Liyuan, Zhang Xiaojun, Li Xin, Jia Juqing, Yang Huizhen, Zhan Haixian, Qiao Linyi, Guo Huijuan, Chang Zhijian
College of Life Science, Shanxi University, Taiyuan 030006, Shanxi, China.
Institute of Crop Science, Shanxi Academy of Agricultural Sciences, Taiyuan 030031, Shanxi, China.
Int J Mol Sci. 2015 Jul 28;16(8):17231-44. doi: 10.3390/ijms160817231.
Powdery mildew, caused by Blumeria graminis f. sp. tritici (Bgt), is a globally serious disease adversely affecting wheat production. The Bgt-resistant wheat breeding line CH09W89 was derived after backcrossing a Bgt resistant wheat-Thinopyrum intermedium partial amphiploid TAI7045 with susceptible wheat cultivars. At the seedling stage, CH09W89 exhibited immunity or high resistance to Bgt pathotypes E09, E20, E21, E23, E26, Bg1, and Bg2, similar to its donor line TAI7045 and Th. intermedium. No Th. intermedium chromatin was detected based on genomic in situ hybridization of mitotic chromosomes. To determine the mode of inheritance of the Bgt resistance and the chromosomal location of the resistance gene, CH09W89 was crossed with two susceptible wheat cultivars. The results of the genetic analysis showed that the adult resistance to Bgt E09 in CH09W89 was controlled by a single recessive gene, which was tentatively designated as pmCH89. Two polymorphic SSR markers, Xwmc310 and Xwmc125, were linked to the resistance gene with genetic distances 3.1 and 2.7 cM, respectively. Using the Chinese Spring aneuploid and deletion lines, the resistance gene and its linked markers were assigned to chromosome arm 4BL in the bin 0.68-0.78. Due to its unique position on chromosome 4BL, pmCH89 appears to be a new locus for resistance to powdery mildew. These results will be of benefit for improving powdery mildew resistance in wheat breeding programs.
由小麦白粉菌(Blumeria graminis f. sp. tritici,Bgt)引起的白粉病是一种全球性的严重病害,对小麦生产产生不利影响。抗Bgt的小麦育种系CH09W89是通过将抗Bgt的小麦-中间偃麦草部分双体TAI7045与感病小麦品种回交后获得的。在幼苗期,CH09W89对Bgt致病型E09、E20、E21、E23、E26、Bg1和Bg2表现出免疫或高抗性,与其供体系TAI7045和中间偃麦草相似。基于有丝分裂染色体的基因组原位杂交未检测到中间偃麦草染色质。为了确定Bgt抗性的遗传模式和抗性基因的染色体定位,将CH09W89与两个感病小麦品种杂交。遗传分析结果表明,CH09W89对Bgt E09的成株抗性由一个单隐性基因控制,暂定名为pmCH89。两个多态性SSR标记Xwmc310和Xwmc125与抗性基因连锁,遗传距离分别为3.1和2.7 cM。利用中国春缺体-四体和缺失系,将抗性基因及其连锁标记定位到4BL染色体臂的0.68 - 0.78区间。由于其在4BL染色体上的独特位置,pmCH89似乎是一个新的抗白粉病基因位点。这些结果将有助于在小麦育种计划中提高对白粉病的抗性。