Hu Wenjing, Gao Derong, Zhang Yong, Zheng Xu, Lu Chengbin, Wu Hongya, Xu Weigang, Cheng Shunhe, Jia Jizeng
College of Agronomy & Center for Crop Genome Engineering, Henan Agricultural University, Zhengzhou, Henan 450046, China.
Key Laboratory of Wheat Biology and Genetic Improvement for Low & Middle Yangtze Valley, Ministry of Agriculture and Rural Affairs, Lixiahe Institute of Agricultural Sciences, Yangzhou, Jiangsu 225007, China.
Plant Dis. 2023 Feb;107(2):422-430. doi: 10.1094/PDIS-06-22-1338-RE. Epub 2023 Feb 16.
Fusarium head blight (FHB) is a destructive wheat disease worldwide and significantly affects grain yield and quality in wheat. To understand the genetic basis underlying type II FHB resistance in two elite wheat cultivars-Yangmai 4 (YM4) and Yangmai 5 (YM5)-quantitative trait loci (QTL) mapping was conducted in two recombinant inbred line (RIL) populations derived from the crosses of YM4 and YM5 with susceptible cultivar Yanzhan 1 (YZ1), respectively. A survey with markers linked to , , , and in landrace Wangshuibai indicated the nonexistence of these known FHB resistance genes or QTL in YM4, YM5, and YZ1. One overlapped resistance QTL was identified in both RIL populations (namely, ) with a large effect on FHB resistance. One novel resistance QTL () mapped on chromosome 5A was detected only in the YM4/YZ1 population. The resistance alleles of both and did not increase the plant height and did not significantly affect the heading date and flowering date. Kompetitive allele-specific PCR markers for and had been developed to verify in an additional set of 244 geographically diverse cultivars or lines. Pyramiding of the two resistance alleles decreased the percentage of symptomatic spikelets by 51.77% relative to the cultivars or lines without these two resistance alleles. and were shown to be useful alternatives in FHB resistance breeding programs. The results will facilitate marker-assisted selection for introgression of the favorable alleles for improving FHB resistance in breeding programs.
赤霉病是一种在全球范围内具有破坏性的小麦病害,对小麦的产量和品质有显著影响。为了解两个优良小麦品种扬麦4号(YM4)和扬麦5号(YM5)对Ⅱ型赤霉病抗性的遗传基础,分别在由YM4和YM5与感病品种偃展1号(YZ1)杂交衍生的两个重组自交系(RIL)群体中进行了数量性状位点(QTL)定位。利用与地方品种望水白中与 、 、 和 连锁的标记进行调查,结果表明YM4、YM5和YZ1中不存在这些已知的赤霉病抗性基因或QTL。在两个RIL群体中均鉴定出一个重叠抗性QTL(即 ),对赤霉病抗性有较大影响。仅在YM4/YZ1群体中检测到一个位于5A染色体上的新抗性QTL( )。 和 的抗性等位基因均未增加株高,对抽穗期和开花期也无显著影响。已开发出 和 的竞争性等位基因特异性PCR标记,用于在另外一组244个地理来源不同的品种或品系中进行验证。两个抗性等位基因聚合后,相对于没有这两个抗性等位基因的品种或品系,有症状小穗的百分比降低了51.77%。 和 被证明是赤霉病抗性育种计划中的有用替代基因。这些结果将有助于在育种计划中通过标记辅助选择导入有利等位基因来提高赤霉病抗性。