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首页> 外文期刊>Journal of Agricultural Science >Additive Main Effects and Multiplicative Interaction and Genotype Main Effect and Genotype by Environment Interaction Effects-Biplot Analysis of Sorghum Grain Yield in Uganda
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Additive Main Effects and Multiplicative Interaction and Genotype Main Effect and Genotype by Environment Interaction Effects-Biplot Analysis of Sorghum Grain Yield in Uganda

机译:乌干达高粱籽粒产量的环境相互作用与繁殖效应和倍增相互作用及基因型基因型

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Genotype-by-environment interaction analysis is vital for cultivar release, and to identify suitable crop production sites. The current study aimed to determine sorghum grain yield stability and adaptability and to identify the most informative and representative environments for sorghum grain yield performance in Uganda. Sorghum grain yield data of eight (08) genotypes; ICSR 160, IS8193, IESV92043DL, IESV92172DL, GE17/1/2013A, GE35/1/2013A, SESO1, and SESO3 tested across eight (08) major sorghum production area in Uganda for two consecutive seasons of 2017 using randomised complete block design with 2 replications were analysed via Additive Main effects and Multiplicative Interaction (AMMI) and Genotype Main Effect and Genotype by Environment interaction effects (GGE) using PB tools. Genotype IESV92043DL was the ideal genotype in the entire test environments with mean grain yield of 2783 kg ha-1 however genotype ICSR 160 had the highest grain yield of 2823 kg ha-1 across all the test environment. On the other hand, GE17/1/2013A was the most stable and adapted genotype across all the test environment. Of the eight (08) environments tested, biplot analysis precisely grouped the test environments into two presumed mega-environments with the best genotype being IS8193 and ICSR 160. Out of eight (08) trial sites, two (02) environments; Abi and Mayuge were the most representative and informative environment for sorghum grain yield performance in Uganda.
机译:基因型 - 环境相互作用分析对于品种释放至关重要,并鉴定合适的作物生产基地。目前的研究旨在确定高粱谷物产量稳定性和适应性,并确定乌干达高粱粮食产量表现最具信息丰富和代表性环境。高粱谷物产量数据八(08)个基因型; ICSR 160,IS8193,IESV92043DL,IESV92172DL,GE17 / 1/203A,GE35 / 1/203A,SESO1和SESO3在乌干达的八(08)主要高粱生产区测试了2017年连续两个星期季,使用2个使用PB工具通过加性主要效应和倍增性相互作用(AMMI)和基因型主要效应和基因型进行分析复制,并通过环境相互作用效应(GGE)。基因型IESV92043DL是整个测试环境中的理想基因型,平均谷物产量为2783 kg HA-1,但基因型ICSR 160在所有测试环境中具有2823kg HA-1的最高籽粒产率。另一方面,GE17 / 1/203A是所有测试环境中最稳定和适应的基因型。在测试的八个(08)环境中,Biplot分析精确地将测试环境分为两个假定的Mega环境,最佳基因型为8193和ICSR 160.其中八(08)试点,两个(02)环境;阿比和梅苏是乌干达高粱粮食产量表现最具代表性和信息性的环境。

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