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首页> 外文期刊>World Journal of Agricultural Research >Analysis of Yield and Yield Attributing Traits of Maize Genotypes in Chitwan, Nepal
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Analysis of Yield and Yield Attributing Traits of Maize Genotypes in Chitwan, Nepal

机译:尼泊尔Chitwan玉米基因型的产量及产量贡献性状分析

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Fourteen maize genotypes were evaluated at National Maize Research Program (NMRP), Rampur, Chitwan, Nepal with objective was to explore genetic variability and investigate yield and yield attributing traits from 22nd October, 2014 to 12th April, 2015. The experiment was designed in randomized complete block with three replication. Phenotypic observation was taken for important quantitative traits viz. Soil Plant Analysis Development (SPAD) reading, days to 50% tasseling, days to 50% silking, ear height, plant height, days to physiological maturity, ear length, ear girth, ear weight, number of kernel row ear-1, number of kernel row-1, five hundred kernel weight. The result showed that traits plant height, ear height, ear length, ear girth, ear weight, no. of kernel row per ear, no. of kernel per row exhibited positive and highly significant correlation with grain yield per hectare while SPAD reading and five hundred kernel weight given significant correlation. The analysis also indicated that days to 50% tasseling and days to 50% silking explained negative and highly significant correlation with grain yield per hectare. Similarly, days to maturity showed negative and non significant correlation with grain yield per hectare. The result also reflected that genotype ARUN-1EV has been found comparatively superior to ARUN-2 for major yield components. The genetic study revealed that days to silking, days to tasseling and grain yield per hectare were highly heritable (>0.6). Higher GCV and high GAM indicated efficient indirect selection for higher grain yield per hectare based on these traits. Thus, high GAM and GCV was observed in ear weight, grain yield per hectare and ear height. Correlation analysis revealed that the traits plant height, ear length, ear girth, number of kernel per row, ear weight were most yield determinative traits and hence, simultaneous selection for these traits might bring an improvement in grain yield. The research gave the finding that use of ARUN-1EV can be reliable for further research and breeding programs.
机译:2014年10月22日至2015年4月12日,在尼泊尔奇旺州拉姆布尔的国家玉米研究计划(NMRP)对14个玉米基因型进行了评估,目的是探讨遗传变异并调查产量和产量属性。具有三个复制的完整块。对重要的数量性状进行表型观察。土壤植物分析发展(SPAD)读数,抽穗的天数为50%,抽穗的天数为50%,穗高,植物高度,生理成熟的天数,穗长,穗周长,穗重,仁排穗数1,数量第1行内核,五百个内核权重。结果表明:性状株高,穗高,穗长,穗周长,穗重没有。每个耳朵的内核行数每行籽粒数与每公顷籽粒产量呈正相关且高度显着,而SPAD读数和五百粒重则具有显着相关。分析还表明,抽穗达到50%的天数和抽穗达到50%的天数都与每公顷谷物产量呈负相关且高度显着相关。同样,成熟天数与每公顷谷物产量呈负相关和不显着相关。该结果还反映出,对于主要产量成分,已发现基因型ARUN-1EV相对优于ARUN-2。遗传研究表明,丝裂天数,抽穗天数和每公顷谷物产量是高度可遗传的(> 0.6)。较高的GCV和较高的GAM表明,基于这些特性,可以有效地间接选择每公顷更高的谷物产量。因此,在穗重,每公顷谷物产量和穗高方面观察到高GAM和GCV。相关分析表明,株高,穗长,穗周长,每行粒数,穗重等性状是产量决定性状,因此,同时选择这些性状可能会提高籽粒产量。研究发现,使用ARUN-1EV可以可靠地用于进一步的研究和育种计划。

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