首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Population parameters for resistance to Fusarium graminearum and Fusarium verticillioides ear rot among large sets of early, mid-late and late maturing European maize (Zea mays L.) inbred lines
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Population parameters for resistance to Fusarium graminearum and Fusarium verticillioides ear rot among large sets of early, mid-late and late maturing European maize (Zea mays L.) inbred lines

机译:欧洲玉米(Zea mays L.)自交系中大批早熟,中晚熟和晚熟的对禾谷镰刀菌和小镰刀菌耳腐病的种群参数

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Infection of maize ears with Fusarium graminearum (FG) and Fusarium verticillioides (FV) reduces yield and quality by mycotoxin contamination. Breeding and growing varieties resistant to both Fusarium spp. is the best alternative to minimize problems. The objectives of our study were to draw conclusions on breeding for ear rot resistance by estimating variance components, heritabilities and correlations between resistances to FV and FG severity and to investigate different inoculation methods. In 2007 and 2008, three maturity groups (early, mid-late, late) each comprising about 150 inbred lines were tested in Germany, France, Italy, and Hungary according to their maturity group. They were silk channel inoculated by FG (early) and FV (all groups). In the late maturity group, additionally kernel inoculation was applied in a separate trial. The percentage of mycelium coverage on the ear was rated at harvest (0-100%). Significant (P < 0.01) genotypic variances of ear rot severity were found in all groups. Inoculation was superior to natural infection because of higher disease severities and heritabilities. In early maturing flints and dents, FG caused significantly (P < 0.01) higher ear rot severity than FV (61.7 and 55.1% FG vs. 18.2 and 11.1% FV ear rot severity, respectively). FV inoculation in Southern Europe (mid-late, late) resulted in similar means between 10.3 and 14.0%. Selection is complicated by significant (P < 0.01) genotype c environment interactions. Correlation between FG and FV severity was moderate in flints and dents (r = 0.59 and 0.49, respectively) but lines resistant to both fungi exist. We conclude that chances for selecting improved European elite maize material within the existing germplasms is promising by multi-environmental inoculation trials.
机译:禾谷镰刀菌(FG)和网状镰刀菌(FV)感染玉米穗会降低霉菌毒素污染的产量和品质。对镰刀菌属(Fusarium spp)都有抗性的育种和生长品种。是最小化问题的最佳选择。我们的研究目的是通过估计方差分量,遗传力以及对FV和FG严重性的抗性之间的相关性,得出关于耳腐病抗性育种的结论,并研究不同的接种方法。在2007年和2008年,根据成熟度组分别在德国,法国,意大利和匈牙利测试了三个成熟度组(早期,中后期,晚期),每个成熟度组均包含约150个自交系。它们是由FG(早期)和FV(所有组)接种的丝通道。在成熟后期组中,另外的试验中采用了谷粒接种。收获时评定了耳朵上菌丝体覆盖的百分比(0-100%)。在所有组中发现了严重的(P <0.01)耳腐严重程度的基因型变异。由于疾病的严重程度和遗传力较高,接种优于自然感染。在早熟的火石和凹痕中,FG引起的耳腐严重程度明显高于FV(P <0.01)(分别为61.7和55.1%FG与18.2和11.1%FV耳腐严重程度)。在南欧(中晚期,晚期)接种FV的平均比率在10.3%和14.0%之间。选择因显着的(P <0.01)基因型c环境相互作用而变得复杂。在G石和凹痕中,FG和FV严重程度之间的相关性中等(分别为r = 0.59和0.49),但存在对两种真菌均具有抗性的品系。我们得出结论,通过多环境接种试验,在现有种质中选择改良的欧洲优良玉米材料的机会很有希望。

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