Division of Plant Pathology, ICAR-Indian Agricultural Research Institute, New Delhi 110 012, India.
J Genet. 2020;99.
Knowledge on the genetics of maydis leaf blight (MLB) is crucial to breed the resistant maize cultivars to combat disease epidemics as a sustainable and cost-effective approach. The present investigation was framed to understand the genetics of MLB resistance in subtropical maize. Two contrasting genotypes CM119 (susceptible) and SC-7-2-1-2-6-1 (resistant) were used to generate six genetic populations, namely P, P, F, F, BCP and BCP, and evaluated in three target environments for MLB resistance under artificial epiphytotic condition. The CM119 and SC-7-2-1-2-6-1 showed susceptible and resistant reactions with mean disease reaction of 3.89-3.98 and 1.88-2.00, respectively. The derived generations, namely F, F, BCP and BCP showed mean disease reaction of 2.15-2.28, 2.44-2.51, 2.19-2.24 and 2.22-2.28, respectively in the test locations. The segregating generations (F: 0.35-0.37; BCP: 0.24-0.29 and BCP: 0.17-0.20) showed variation for MLB disease resistance over the parental and first filial generations (P: 0.11-0.17; P: 0.08-0.13 and F: 0.12-0.14). The genetic analysis of MLB resistance revealed the nonallelic interactions of duplicate epistasis type across the test locations. Among the gene interactions, dominance x dominance [l] effect was predominant over additive x additive [i] and additive x dominance [j] effects. The segregation analysis and the prediction of the number of major loci revealed at least two major genes associated with MLB tolerance in subtropical maize. Our investigation paved the foundation for the improvement of subtropical maize germplasm of MLB resistance.
对玉米叶斑病(MLB)遗传学的了解对于培育具有抗性的玉米品种以对抗疾病爆发至关重要,这是一种可持续且具有成本效益的方法。本研究旨在了解亚热带玉米对 MLB 抗性的遗传学。使用两个对照基因型 CM119(感病)和 SC-7-2-1-2-6-1(抗病)生成六个遗传群体,即 P、P、F、F、BCP 和 BCP,并在三个目标环境中评估它们在人工诱发条件下对 MLB 的抗性。CM119 和 SC-7-2-1-2-6-1 表现出易感和抗性反应,平均病情反应分别为 3.89-3.98 和 1.88-2.00。衍生世代 F、F、BCP 和 BCP 在测试地点的平均病情反应分别为 2.15-2.28、2.44-2.51、2.19-2.24 和 2.22-2.28。分离世代(F:0.35-0.37;BCP:0.24-0.29 和 BCP:0.17-0.20)在亲本和第一代中表现出 MLB 抗病性的变化(P:0.11-0.17;P:0.08-0.13 和 F:0.12-0.14)。MLB 抗性的遗传分析表明,在测试地点存在非等位基因相互作用的重复上位性类型。在基因相互作用中,显性 x 显性 [l] 效应优先于加性 x 加性 [i] 和加性 x 显性 [j] 效应。分离分析和主要基因座数量的预测表明,亚热带玉米中至少有两个与 MLB 耐受性相关的主要基因。我们的研究为改善亚热带玉米 MLB 抗性的种质奠定了基础。