首页> 外文期刊>American Journal of Plant Sciences >Genetic Variation for Grain Yield and Yield Related Traits in Tef [Eragrostis tef (Zucc.)Trotter] under Moisture Stress and Non-Stress Environments
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Genetic Variation for Grain Yield and Yield Related Traits in Tef [Eragrostis tef (Zucc.)Trotter] under Moisture Stress and Non-Stress Environments

机译:水分胁迫和非胁迫条件下特氏[Eragrostis tef(Zucc。)Trotter]的产量和相关性状的遗传变异

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Tef [Eragrostis tef (Zucc.)Trotter] is an ancient and major cereal crop in Ethiopia. Increasing tef grain yield partly requires developing cultivars that are adapted to drought stress environment. An experiment was carried out using 18 tef genotypes grown during September to December, 2010, under two water supply environments (stress during grain filling period, and non-stress) to identify genetic variation, heritability and correlations of grain yield and yield related traits. Broad-sense heritability values under respective stress and non-stress environments were grain yield (g/m2) 0.80 and 0.89, total biomass (g/m2) 0.89 and 0.73, harvest index 0.69 and 0.79, panicle weight (g/plant) 0.93 and 0.92, and seed weight (g/plant) 0.96 and 0.86. The correlations of grain yield under respective stress and non-stress environments were total biomass rp = 0.64, rg = 0.70, and rp = 0.48, rg = 0.56, harvest index rp = 0.70, rg = 0.64, and rp = 0.87, rg = 0.90, panicle weight rp = 0.98, rg = 1.00, and rp = 0.96, rg = 1.00, and seed weight/plant rp = 0.98, rg = 1.00, and rp = 0.90, rg = 1.00. The present experiment showed that either grain yield per se, or seed weight/plant could be used to improve grain yield under stress and non-stress environments.
机译:Tef [Eragrostis tef(Zucc。)Trotter]是埃塞俄比亚的一种古老的主要谷物作物。增加特夫谷粒产量部分地需要开发适应干旱胁迫环境的品种。在两个供水环境下(灌浆期的胁迫和非胁迫),使用2010年9月至2010年12月生长的18种tef基因型进行了实验,以鉴定遗传变异,遗传力以及谷物产量与产量相关性状的相关性。分别在胁迫和非胁迫环境下的广义遗传力值为谷物产量(g / m2)0.80和0.89,总生物量(g / m2)0.89和0.73,收获指数0.69和0.79,穗重(g /植物)0.93种子重量(克/株)为0.92和0.86。在相应的胁迫和非胁迫环境下,谷物产量的相关性分别为总生物量rp = 0.64,rg = 0.70和rp = 0.48,rg = 0.56,收获指数rp = 0.70,rg = 0.64和rp = 0.87,rg = 0.90,穗重rp = 0.98,rg = 1.00,rp = 0.96,rg = 1.00,种子重量/植株rp = 0.98,rg = 1.00,rp = 0.90,rg = 1.00。本实验表明,在胁迫和非胁迫环境下,无论是谷物本身的产量,还是种子重量/植株均可用于提高谷物产量。

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