Faculty of Agriculture, University of Padjadjaran, Jl. Raya Bandung-Sumedang, Jatinangor, Km. 21, 45353, Indonesia.
Faculty of Agriculture, University of Singaperbangsa Karawang, Indonesia.
Biomed Res Int. 2022 Jul 25;2022:3963850. doi: 10.1155/2022/3963850. eCollection 2022.
Selection of high yielding and stable maize hybrid requires effective method of evaluation. Multienvironment evaluation is a critical step in plant breeding programs that is aimed at selecting the ideal genotype in a wide range of environments. A method of evaluation that combines a variety parameter of stability could provide more accurate information to select the ideal genotype. The aims of the study were (i) to identify the effect of genotype, environment, and genotype × environment interactions (GEIs) on maize hybrid yields and (ii) to select and to compare maize hybrids that have high and stable yields in diverse environments in Sumatra Island based on combined analysis, selection index, and GGE biplot. The study was conducted in five different environments in Sumatra Island, Indonesia, using a randomized complete block design repeated three times. Data were estimated using combined variance analysis, parametric and nonparametric stability, sustainability index, and GGE biplot. The results showed that the genotype had a significant effect on maize hybrid yields with a contribution of 41.797%. The environment contributed to 24.314%, and GEIs contributed 33.889% of the total variation. E1 (Karo, South Sumatra; dry season) and E3 (Tanjung Bintang, Lampung; dry season) were identified as the most ideal environments (representative) for testing the hybrids for wider adaptability. The maize hybrid with high and stable yields can be selected based on combined stability analysis and sustainability index as well as GGE biplot. These three methods are effectively selected high yielding and stable genotypes when they are used together. The three maize hybrids, namely, MH2, MH8, and MH9, are recommended as high yielding and stable genotype candidates.
选择高产、稳产的玉米杂交种需要有效的评价方法。多环境评价是植物育种计划中的一个关键步骤,旨在在广泛的环境中选择理想的基因型。一种结合稳定性多种参数的评价方法可以为选择理想基因型提供更准确的信息。本研究的目的是:(i)确定基因型、环境和基因型×环境互作(GEI)对玉米杂交种产量的影响;(ii)基于联合分析、选择指数和 GGE 双标图,在苏门答腊岛的不同环境中选择和比较具有高产量和稳产性的玉米杂交种。本研究在印度尼西亚苏门答腊岛的五个不同环境中进行,采用随机完全区组设计重复三次。数据采用联合方差分析、参数和非参数稳定性、可持续性指数和 GGE 双标图进行估计。结果表明,基因型对玉米杂交种产量有显著影响,贡献了 41.797%。环境贡献了 24.314%,GEI 贡献了 33.889%的总变异。E1(南苏门答腊的卡罗,旱季)和 E3(楠榜的丹戎宾坦,旱季)被确定为最理想的环境(代表),用于测试杂交种的更广适应性。基于联合稳定性分析和可持续性指数以及 GGE 双标图,可以选择具有高产、稳产的玉米杂交种。这三种方法在联合使用时,有效地选择了高产、稳产的基因型。推荐 MH2、MH8 和 MH9 这三个玉米杂交种作为高产、稳产基因型的候选种。