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Multi-Environment Evaluation and Genotype ×Environment Interaction Analysis of Sorghum Sorghum bicolor(L.) Moench Genotypes in Highland Areas of Ethiopia

机译:高粱的多环境评价和基因型×环境相互作用分析高粱双子石(L.)Moench基因型在埃塞俄比亚高地地区

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摘要

Sorghum [Sorghum bicolor (L.) Moench] is a high-yielding, nutrient-use efficient, and drought tolerant crop that can be cultivated on over 80 per cent of the world’s agricultural land. However, a number of biotic and abiotic factors are limiting grain yield increase. Diseases (leaf and grain) are considered as one of the major biotic factors hindering sorghum productivity in the highland and intermediate altitude sorghum growing areas of Ethiopia. In addition, the yield performance of crop varieties is highly influenced by genotype × environment (G × E) interaction which is the major focus of researchers while generating improved varieties. In Ethiopia, high yielding and stable varieties that withstand biotic stress in the highland areas are limited. In line with this, the yield performance of 21 sorghum genotypes and one standard check were evaluated across 14 environments with the objectives of estimating magnitude G × E interaction for grain yield and to identify high yielder and stable genotypes across environments. The experiment was laid out using Randomized Complete Block Design with three replications in all environments. The combined analysis of variance across environments revealed highly significant differences among environments, genotypes and G × E interactions of grain yield suggesting further analysis of the G × E interaction. The results of the combined AMMI analysis of variance indicated that the total variation in grain yield was attributed to environments effects 71.21%, genotypes effects 4.52% and G × E interactions effects 24.27% indicating the major sources of variation. Genotypes 2006AN7010 and 2006AN7011 were high yielder and they were stable across environments and one variety has been released for commercial production and can be used as parental lines for genetic improvement in the sorghum improvement program. In general, this research study revealed the importance of evaluating sorghum genotypes for their yield and stability across diverse highland areas of Ethiopia before releasing for commercial production.
机译:高粱[高粱双子(L.)Moench]是一种高产,营养 - 使用效率,耐旱性,可在世界农业用地80%以上培养。然而,许多生物和非生物因素限制了籽粒产量增加。疾病(叶子和谷物)被认为是妨碍高原和中间高度高粱生长地区的高粱生产率的主要生物因素之一。此外,作物品种的产量性能受基因型×环境(G×e)互动的影响,这是研究人员的主要重点,同时产生改善的品种。在埃塞俄比亚,高产率稳定的品种,可承受高地地区的生物应力是有限的。符合这一点,在14个环境中评估了21个高粱基因型的产量性能和一个标准检查,其目的是估算粒度的幅度G×E相互作用,并识别跨环境的高yielder和稳定基因型。在所有环境中使用随机完整块设计进行了随机完整的块设计。环境跨越环境的综合分析揭示了谷物产量的环境,基因型和G×E相互作用的显着差异,这表明G×E相互作用进一步分析。组合的AMMI方差分析结果表明,谷物产量的总变化归因于环境效应71.21%,基因型效应4.52%和G×E相互作用效应24.27%表示主要的变异来源。基因型2006AN7010和2006AN7011是高yielder,它们跨越环境稳定,一品种被释放用于商业生产,可用作高粱改善计划中的遗传改良的父母线。一般来说,该研究表明,在释放商业生产之前,揭示了评估高粱基因型对埃塞俄比亚各种高地地区的产量和稳定性的重要性。

著录项

  • 来源
    《美国植物学期刊(英文)》 |2020年第012期|P.1899-1917|共19页
  • 作者单位

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

    Ethiopian Institute of Agricultural Research (EIAR) Melkassa Agriculture Research Center Adama Ethiopia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 禾谷类作物;
  • 关键词

    G × E Interaction; Additive Main Effect and Multiplicative Interaction (AMMI); Genotype and Genotype by Environment (GGE); Genotypes Stability;

    机译:G×E相互作用;添加剂主要效果和乘法相互作用(AMMI);环境(GGE)基因型和基因型;基因型和稳定性;
  • 入库时间 2022-08-19 04:55:16
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