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首页> 外文期刊>Biotechnology & Biotechnological Equipment >AMMI analysis of genotype?×?environment interaction on grain yield of sesame ( Sesamum indicum L.) genotypes in Iran
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AMMI analysis of genotype?×?environment interaction on grain yield of sesame ( Sesamum indicum L.) genotypes in Iran

机译:基因型的AMMI分析?×α×α×α〜伊朗芝麻籽粒产量的互动

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摘要

In this study, we investigated the effect of genotype?×?environment interaction (GEI) on the grain yield of 15 different sesame genotypes on four test areas (Arak, Birjand, Karaj and Shiraz) in two years (2017–2018). We observed significant differences in all sources of combined variance analysis. The interaction items in AMMI (additive main effects and multiplicative interactions) analysis of variance were divided into three parts, in which the interaction principal components IPC1 and IPC2 items justified about 85% of interactions. Also, IPC2 and residual items were non-significant. Our experiments showed that the superior genotypes were G8 G13 G9 G10 G15 G14 G7. The labile locations were Karaj??Birjand??Arak??Shiraz. Furthermore, G4, G1, G13, G8 and G10 (G4 G8 G9 G10 G13 G6, respectively) had the least GEI concerning IPC1 vs. grain yield (IPC1 vs. IPC2, respectively). The recommended genotypes for each region include G9, G2, G3 and G12 for Arak and Birjand; G7, G11 and G14 for Karaj; and G10, G8, G4 and G13 for Shiraz. According to the low environmental impact and the proximity of the IPC values of Shiraz, Arak and Birjand environments, Arak can be considered as the mega-environment for these three locations. The stable genotypes with higher general durability consisted of G4 G6 G1 G2. Based on the AMMI stability value (ASV) and genotype selection index (GSI), Jirouf 13 (G4), Darab 14 (G8), Safi Abad 1 (G9), Ahwaz Local Cultivar (G10) and Isfahan Local Cultivar (G13) were superior genotypes about grain yield and GEI impact, and can be recommended for future investigations.
机译:在这项研究中,我们研究了两年(2017-2018)的四个测试区(Arak,Birjand,Karaj和Shiraz)对15种不同芝麻基因型的粮食产量的影响我们观察到所有组合方差分析来源的显着差异。 AMMI中的相互作用项目(添加主要效应和乘法相互作用)的变化分析分为三个部分,其中交互主成本IPC1和IPC2项目的互动约为85%。此外,IPC2和剩余物品是非显着的。我们的实验表明,上基因型为G8> G13> G10> G15> G14> G7。不稳定的位置是卡拉夫?> birjand?>?arak?> shiraz。此外,G4,G1,G13,G8和G10(G4> G8> G9> G10> G13> G6分别)具有最小的IPC1与谷物产量(IPC1与IPC2)的GEI。每个区域的推荐基因型包括用于Arak和Birjand的G9,G2,G3和G12; KARAJ的G7,G11和G14;和Shiraz的G10,G8,G4和G13。根据环境影响的低环境影响和Shiraz,Arak和Birjand环境的IPC值,Arak可以被视为这三个地点的Mega环境。具有较高一般耐久性的稳定基因型由G4> G6> G1> G2组成。基于AMMI稳定值(ASV)和基因型选择指数(GSI),Jirouf 13(G4),Darab 14(G8),Safi Abad 1(G9),Ahwaz局部品种(G10)和伊斯法罕局部品种(G13)是关于籽粒产量和GEI影响的优异基因型,可以建议未来的调查。

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