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新型小麦种质CJ 9306对赤霉病抗性的QTL分析。I. 对真菌传播的抗性

QTL analysis of resistance to Fusarium head blight in the novel wheat germplasm CJ 9306. I. Resistance to fungal spread.

作者信息

Jiang Guo-Liang, Shi Jianrong, Ward Richard W

机构信息

Department of Crop and Soil Sciences, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Theor Appl Genet. 2007 Dec;116(1):3-13. doi: 10.1007/s00122-007-0641-y. Epub 2007 Sep 21.

Abstract

Fusarium head blight (FHB or scab) caused by Fusarium species is a destructive disease in wheat and barley worldwide. The objectives of our study were to identify quantitative trait loci (QTLs) for resistance to FHB spread (Type II resistance) and to quantify the magnitude of their effects in a novel highly resistant wheat germplasm, CJ 9306. A set of 152 F(7) recombinant inbred lines (RILs) derived from a cross Veery/CJ 9306 and two parents were evaluated for FHB resistance by single-floret inoculation in three greenhouse experiments in 2002 and 2004. Percentage (PSS) and number (NSS) of scabby spikelets at 25 days post-inoculation were analyzed. In total 682 simple sequence repeat (SSR) markers were screened for polymorphism between the two parents, and a genetic linkage map was constructed with 208 polymorphic markers. Ten QTLs associated with FHB resistance were detected, five from CJ 9306 and five from Veery. The major QTL on 3BS (QFhs.ndsu-3BS) was validated in CJ 9306, exhibiting greatest additive effects and explained 30.7% of phenotypic variation for PSS on the overall average of three experiments. Another major QTL on 2DL (QFhs.nau-2DL) from CJ 9306 explained 9.9-28.4% of phenotypic variation, with a significant QTL x environment interaction. QFhs.nau-1AS and QFhs.nau-7BS showed lower additive effects and explained lower variance (4.5-9.5%). A QTL on 5AS, decreasing PSS by 10.3% on average, was validated by simple marker analysis and joint trait/experiment IM/CIM analysis despite insignificance for single-experiment IM and CIM analyses. Likewise, QFhs.nau-2BL and QFhs.nau-1BC from Veery could reduce PSS by 13.2 and 11.4%, respectively. The effects of other three minor QTLs from Veery were significant for one experiment and combined analysis. Comparisons of two- and three-locus combinations suggested that the effects of FHB resistance QTLs/genes could be accumulated, and the resistance could be feasibly enhanced by selection of favorable alleles for multiple loci. Four two-locus combinations and two three-locus combinations were suggested as the preferential choices in practical marker-assisted selection program.

摘要

由镰刀菌属引起的小麦赤霉病(FHB或赤霉)是全球小麦和大麦上的一种毁灭性病害。我们研究的目的是在一种新型高抗小麦种质CJ 9306中鉴定抗FHB扩展的数量性状位点(QTL,即II型抗性)并量化其效应大小。2002年和2004年在三个温室试验中,通过单小花接种对一组152个来源于Veery/CJ 9306杂交组合的F(7)重组自交系(RIL)及其两个亲本进行了FHB抗性评估。对接种后25天的病小穗率(PSS)和病小穗数(NSS)进行了分析。总共筛选了682个简单序列重复(SSR)标记用于两个亲本间的多态性分析,并构建了一张包含208个多态性标记的遗传连锁图谱。检测到10个与FHB抗性相关的QTL,其中5个来自CJ 9306,5个来自Veery。位于3BS上的主效QTL(QFhs.ndsu - 3BS)在CJ 9306中得到验证,表现出最大的加性效应,在三个试验的总体平均值上解释了PSS表型变异的30.7%。来自CJ 9306的位于2DL上的另一个主效QTL(QFhs.nau - 2DL)解释了9.9 - 28.4%的表型变异,存在显著的QTL×环境互作。QFhs.nau - 1AS和QFhs.nau - 7BS表现出较低的加性效应,解释的变异较小(4.5 - 9.5%)。位于5AS上的一个QTL,平均使PSS降低10.3%,尽管在单试验的区间作图(IM)和复合区间作图(CIM)分析中不显著,但通过简单标记分析以及联合性状/试验IM/CIM分析得到了验证。同样,来自Veery的QFhs.nau - 2BL和QFhs.nau - 1BC分别可使PSS降低13.2%和11.4%。来自Veery的其他三个微效QTL在一个试验和联合分析中效应显著。两位点和三位点组合的比较表明,FHB抗性QTL/基因的效应可以累加,通过选择多个位点的有利等位基因可以切实提高抗性。在实际的标记辅助选择计划中,建议优先选择四个两位点组合和两个三位点组合。

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