Lin F, Xue S L, Zhang Z Z, Zhang C Q, Kong Z X, Yao G Q, Tian D G, Zhu H L, Li C J, Cao Y, Wei J B, Luo Q Y, Ma Z Q
National Key Lab of Crop Genetics and Germplasm Enhancement, College of Agricultural Sciences, Nanjing Agricultural University, 210095 Jiangsu, China.
Theor Appl Genet. 2006 Feb;112(3):528-35. doi: 10.1007/s00122-005-0156-3. Epub 2005 Dec 3.
Fusarium head blight (FHB) is a serious disease in wheat and barley affecting both yield and quality. To identify genes for resistance to infection, the RIL population derived from 'Nanda2419' x 'Wangshuibai' and the parents were evaluated for percentage of infected spikes (PIS) in four different environments. Using a 2,960 cM marker framework map constructed for this population, ten chromosome regions were detected for their association with type I resistance through interval mapping with Mapmaker/QTL, among which QTLs mapped in the intervals of Xwmc349--Xgwm149 on chromosome 4B, of Xwmc96--Xgwm304 on chromosome 5A and of Xgwm408--Xbarc140 on chromosome 5B were revealed in at least three environments and have Wangshuibai as the source of resistance alleles. Qfhi.nau-4B and Qfhi.nau-5A had larger effects and explained up to 17.5 and 27.0% of the phenotypic variance, respectively. To detect epistasis QTLs, two-locus interactions were examined by whole genome scan. Interactions of five locus pairs were found to have significant effects on type I resistance with the LOD score ranging 3.8-6.5 and four of them conferred resistance in parental phase. The one with the most significant effect was Xcfd42--Xgwm469 (6D)/Xwmc390-2--Xbd04 (2A) pair. No QTL x E interaction was detected for PIS. It was found that flowering time did not have significant effects on PIS in this population. Our studies indicated that Wangshuibai is useful for breeding for both type I and type II scab resistance and the markers associated with the QTLs could be used in marker-assisted selection and isolation of scab-resistance QTLs.
小麦赤霉病(FHB)是小麦和大麦中的一种严重病害,会影响产量和品质。为了鉴定抗侵染基因,对由‘南农2419’ב望水白’衍生的重组自交系群体(RIL)及其亲本在四个不同环境中进行了感病穗率(PIS)评估。利用为该群体构建的一张2960 cM的标记框架图谱,通过Mapmaker/QTL软件进行区间作图,检测到10个染色体区域与I型抗性相关,其中位于4B染色体上Xwmc349 - Xgwm149区间、5A染色体上Xwmc96 - Xgwm304区间以及5B染色体上Xgwm408 - Xbarc140区间的QTL在至少三个环境中被检测到,且抗性等位基因来源于望水白。Qfhi.nau - 4B和Qfhi.nau - 5A的效应较大,分别解释了高达17.5%和27.0%的表型变异。为了检测上位性QTL,通过全基因组扫描研究了两位点互作。发现五对位点的互作对I型抗性有显著影响,LOD值范围为3.8 - 6.5,其中四对在亲本相中表现为抗性。效应最显著的是Xcfd42 - Xgwm469(6D)/Xwmc390 - 2 - Xbd04(2A)这一对。未检测到PIS的QTL×环境互作。发现在该群体中开花时间对PIS没有显著影响。我们的研究表明,望水白对于I型和II型赤霉病抗性育种均有用,与这些QTL相关的标记可用于标记辅助选择以及赤霉病抗性QTL的分离。