雨养条件下优质蛋白玉米(Zea mays L.)杂交种的表现和产量稳定性

F. Bankole, Olasunkanmi Olajide, G. Olaoye
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摘要

摘要 优质蛋白玉米(QPM)的商业化可以解决世界上一些发展中国家普遍存在的粮食和营养不安全问题。在不同的雨水灌溉环境下对优质蛋白玉米杂交种进行评估,可为针对目标环境选择最具生产力的基因型提供宝贵的证据。本研究在三个地点对 11 个 QPM 和 2 个商业杂交种(对照)两年的农艺性能和谷物产量稳定性进行了评估。除谷壳覆盖率和花期-抽穗期间隔外,所有测得性状的表现在不同环境下均存在显著差异(p ≥ 0.01),而基因型以及基因型 × 环境交互作用在所有性状上也存在显著差异。受试的 QPM 杂交种的表现分别比当地和参考对照高出 17.28% 和 29.47%。双图解释了 85.3% 的总产量变异,其中 65.4% 归因于主成分 1,19.9% 归因于主成分 2。三个顶点杂交种,即 EWQH-25、EWQH-21 和 Local Check,被确定为在其所处环境中反应最灵敏的杂交种。杂交种 EWQH-21 在所有环境中产量最高,但不稳定。因此,具有相似产量值和更稳定表现的杂交种 EWQH-22、EWQH-9 和 EWQH-13 被认为是理想的跨环境杂交种。事实证明,拉派 2017(E2)既有代表性又有鉴别性,是选择具有广泛适应性的杂交种的理想试验环境。研究得出结论,建议在不同环境下种植 EWQH-9、EWQH-13 和 EWQH-22,而在特定适应区域种植 EWQH-21。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance and Yield Stability of Quality Protein Maize (Zea mays L.) Hybrids under Rainfed Condition
Abstract Quality protein maize (QPM) commercialization can combat the food and nutritional insecurity that is common in some developing nations of the world. Evaluation of QPM hybrids under varying rainfed environments provide valuable evidence for the selection of the most productive genotypes for the target environment. The present study was conducted at three locations to assess the agronomic performance and the grain yield stability of 11 QPM and 2 commercial hybrids (checks) over two years. There were significant (p ≥ 0.01) differences among the environments in the expression of all measured traits while genotype as well as genotype × environment interaction also differed significantly for all the traits except for husk cover and Anthesis-silking interval. The tested QPM hybrids outperformed the local and reference checks by 17.28% and 29.47% respectively. The biplot explained 85.3% of the total variation in yield, with 65.4% attributed to principal component 1 and 19.9% to principal component 2. Three vertex hybrids, EWQH-25, EWQH-21 and Local Check, were identified as the most responsive in the environments within which they fall. Hybrid EWQH-21 produced the highest yield across all environments but was unstable. Therefore, hybrids EWQH-22, EWQH-9, and EWQH-13, with similar yield values and more stable performances were recognized as ideal across environments. Lapai 2017 (E2) proves to be both representative and discriminative, making it the ideal test environment for selecting hybrids with broad adaptability. The study concludes that EWQH-9, EWQH-13, and EWQH-22 be recommended for cultivation across the environments while EWQH-21 be recommended for the specific area of adaptation.
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