National Maize Improvement Centre of China, China Agricultural University, Beijing, People's Republic of China.
Theor Appl Genet. 2017 Aug;130(8):1723-1734. doi: 10.1007/s00122-017-2921-5. Epub 2017 May 29.
A quantitative trait locus qRfg3 imparts recessive resistance to maize Gibberella stalk rot. qRfg3 has been mapped into a 350-kb interval and could reduce the disease severity index by ~26.6%. Gibberella stalk rot, caused by the fungal pathogen Fusarium graminearum, severely affects maize yield and grain quality worldwide. To identify more resistance quantitative trait loci (QTLs) against this disease, we analyzed a recombinant inbred line (RIL) population derived from a cross between resistant H127R and susceptible C7-2 inbred lines. Within this population, maize resistance to Gibberella stalk rot had high broad-sense heritability. A major QTL, qRfg3, on chromosome 3 was consistently detected across three field trials, accounting for 10.7-19.4% of the total phenotypic variation. Using a progeny-based sequential fine-mapping strategy, we narrowed qRfg3 down to an interval of ~350 kb. We further demonstrated that qRfg3 is a recessive resistance locus to Gibberella stalk rot that reduced the disease severity index by ~26.6%. Both the gene location and recessive genetic mode distinguish qRfg3 from other stalk rot resistance loci. Hence, qRfg3 is valuable as a complement to existing resistance QTLs to improve maize resistance to Gibberella stalk rot.
一个数量性状位点 qRfg3 赋予玉米赤霉茎腐病的隐性抗性。qRfg3 已被定位在 350kb 区间内,可使病情指数降低约 26.6%。由真菌病原体禾谷镰刀菌引起的玉米赤霉茎腐病,在全球范围内严重影响玉米产量和谷物质量。为了鉴定更多针对该病害的抗性数量性状位点(QTL),我们分析了来自抗性 H127R 和易感 C7-2 自交系杂交的重组自交系(RIL)群体。在该群体中,玉米对赤霉茎腐病的抗性具有较高的广义遗传力。在三个田间试验中,3 号染色体上的一个主要 QTL qRfg3 被一致检测到,占总表型变异的 10.7-19.4%。通过基于后代的顺序精细定位策略,我们将 qRfg3 缩小到约 350kb 的区间内。我们进一步证明 qRfg3 是玉米赤霉茎腐病的隐性抗性位点,可使病情指数降低约 26.6%。qRfg3 的基因位置和隐性遗传模式与其他茎腐病抗性位点不同。因此,qRfg3 可作为现有抗性 QTL 的补充,提高玉米对赤霉茎腐病的抗性。