首页> 外文期刊>Journal of Biology, Agriculture and Healthcare >Genetic Variations of Leaf Trait in Maize (Zea mays L.) under Drought Stress in Different Growth Stages
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Genetic Variations of Leaf Trait in Maize (Zea mays L.) under Drought Stress in Different Growth Stages

机译:不同生育时期干旱胁迫下玉米叶片性状的遗传变异

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Maize is the third most important food crop worldwide, and it is more sensitive to drought. Two field experiments were conducted under drought in different growth stages at two locations, the Demonstration Farm, Faculty of Agriculture, University of Khartoum, at Shambat, and the Gezira Research Station Farm, at Medani, in season (2003/2004). To estimate the pattern of inheritance, determine the relative magnitude of genetic variation effects for a number of leaves/plant and leaf area index in fifteen maize genotypes. A split-plot design, layout within randomized complete block design with three replications was used for the experiment. Significant differences among genotypes were detected in all traits, except, leaf area index (30 and 60 days) and number of leaves/plant (45 days). High genotypic coefficient of variation, genetic advance and heritability were exhibited by a number of leaves/plant for 60 days. Grain yield was significantly and positively associated at the phenotypic level with the leaf area index and a number of leaves/plant at 60 days. Thus the characters leaf area index and number of leaves/plant to be the important traits which would be an effectual in selection for maize improvement under drought stress at different growth stages. Based on their positive association with grain yield, the traits leaf area index and number of leaves/plant would be the exploited for improving grain yield and facilitate further efforts in the maize improvement program in the country. Keywords: correlation; heritability; morphological traits; vegetative and reproductive phases; water stress
机译:玉米是世界第三重要的粮食作物,对干旱更敏感。在两个地点,干旱季节,在旱灾的不同地点进行了两个田间试验,季节分别是喀土穆大学沙姆巴特大学农业学院示范农场和梅丹尼的Gezira研究站农场(2003/2004年)。要估计遗传模式,请确定15种玉米基因型中许多叶片/植物和叶面积指数的遗传变异效应的相对大小。实验使用了分裂图设计,在具有三个重复的随机完整块设计中进行了布局。除叶面积指数(30天和60天)和叶片/植物数量(45天)外,所有性状在基因型之间均存在显着差异。 60天的许多叶片/植物表现出高的基因型变异系数,遗传进展和遗传力。在表型水平上,籽粒产量与叶面积指数和60天叶片/植物的数量显着正相关。因此,叶片面积指数和叶片/植物的数量是重要的性状,在选择不同生育期干旱胁迫下的玉米改良中将发挥重要作用。基于它们与谷物产量的正相关性,将利用叶面积指数和叶片/植物的性状来提高谷物产量,并促进该国玉米改良计划的进一步努力。关键词:相关性遗传力形态特征营养和生殖阶段;水分胁迫

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