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首页> 外文期刊>Journal of Agricultural Science >Analysis of Genotype by Environment Interaction of Improved Pearl Millet for Grain Yield and Rust Resistance
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Analysis of Genotype by Environment Interaction of Improved Pearl Millet for Grain Yield and Rust Resistance

机译:改良谷子的环境互作基因型分析。

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Pearl millet is grown by inhabitants of the semi-arid zones. Due to the unpredictable climatic conditions the genotype-by-environment interaction (GEI) makes it hard to select genotypes adapted to such conditions. The study objectives therefore were to analyse the patterns of GEI and to identify superior genotypes for grain yield and rust resistance. Seventy six genotypes were planted in four environments in 4×19 alpha design with two replications. The ANOVA results showed that main effects of environments were significant (p ≤ 0.05) for grain yield and highly significant (p ≤ 0.001) for rust resistance while the main effects of the genotypes and their interactions with environments were also important for grain yield and rust severity at 50% physiological maturity. The GGE biplot analysis revealed that environments associated with more rains received during vegetative phase performed better than those receiving more rains during post-anthesis phase. The winner in the best environment for grain yield was ICMV3771×SDMV96053 while Shibe×CIVT9206 and Shibe×GGB8735 were the best for rust resistance.
机译:珍珠粟是由半干旱地区的居民种植的。由于不可预测的气候条件,因环境而异的基因型(GEI)使得难以选择适合于这种条件的基因型。因此,研究目的是分析GEI的模式,并确定出优质的基因型,以提高谷物的产量和抗锈性。在四个环境中以4×19 alpha设计种植了76个基因型,重复两次。方差分析结果表明,环境的主要影响对谷物产量具有显着影响(p≤0.05),而对防锈性具有高度显着影响(p≤0.001),而基因型的主要影响及其与环境的相互作用对谷物产量和铁锈也很重要生理成熟度为50%时严重。 GGE双线图分析表明,与花期后雨季相比,植物生长期收到更多雨水的环境表现更好。谷物产量最佳环境中的赢家是ICMV3771×SDMV96053,而Shibe×CIVT9206和Shibe×GGB8735则是抗锈蚀性最好的。

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