Neupane Shree Prasad, Stagnati Lorenzo, Dell'Acqua Matteo, Busconi Matteo, Lanubile Alessandra, Pè Mario Enrico, Caproni Leonardo, Marocco Adriano
Institute of Plant Sciences, Scuola Superiore Sant'Anna, Pisa, Italy.
Dipartimento di Scienze delle produzioni vegetali sostenibili, Università Cattolica del Sacro Cuore, Piacenza, Italy.
BMC Plant Biol. 2025 May 15;25(1):639. doi: 10.1186/s12870-025-06684-7.
Maize (Zea mays L.) is one of the most productive crops worldwide. As a heterotic crop predominantly grown as F hybrid, maize exhibits challenges for genetic studies of complex traits, since homozygous genotypes, which are largely used in these studies, may not accurately reflect what happens in cultivated conditions. To map Fusarium Ear Rot (FER) resistance to Fusarium verticillioides and traits with potential impact on yield, including phenology, we constructed a recombinant intercross (RIX) population. This was achived by crossing pairs of recombinant inbred lines (RILs) derived from a multi-parent maize population. We characterized the RIX population over two growing seasons, employing artificial F. verticillioides inoculation. The heterozygous background of the material enabled the identification of QTL and candidate genes through in silico reconstruction of RIX genotype probabilities. A total of 37 loci were identified using single-year BLUPs while 29 with joint-year BLUPs. These, included several known QTL associated with days to tasseling, kernel row number and a QTL on the chromosome 9 associated with FER resistance. In this region, we could identify candidates based on their predicted functions and potential roles in plant-pathogen interactions and/or resistance mechanisms. These QTL represent potential breeding targets to FER resistance and yield components in commercial maize varieties.
玉米(Zea mays L.)是全球产量最高的作物之一。作为主要以F1杂交种种植的杂种优势作物,玉米在复杂性状的遗传研究中面临挑战,因为这些研究中大量使用的纯合基因型可能无法准确反映栽培条件下的实际情况。为了定位对轮枝镰孢菌的穗腐病抗性以及对产量有潜在影响的性状,包括物候期,我们构建了一个重组互交(RIX)群体。这是通过将源自多亲本玉米群体的重组自交系(RIL)成对杂交实现的。我们在两个生长季节对RIX群体进行了表征,采用人工接种轮枝镰孢菌。该材料的杂合背景使得通过对RIX基因型概率的计算机重建来鉴定QTL和候选基因成为可能。使用单年最佳线性无偏预测(BLUP)鉴定出37个位点,而使用联合年份BLUP鉴定出29个位点。其中包括几个与抽雄天数、穗行数相关的已知QTL以及位于9号染色体上与穗腐病抗性相关的一个QTL。在该区域,我们可以根据其预测功能以及在植物-病原体相互作用和/或抗性机制中的潜在作用来鉴定候选基因。这些QTL代表了商业玉米品种中穗腐病抗性和产量构成要素的潜在育种目标。