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首页> 外文期刊>Journal of Biology, Agriculture and Healthcare >Genetic Variability Studies in Bread Wheat (Triticum Aestivum L.) Genotypes at Kulumsa Agricultural Research Center, South East Ethiopia
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Genetic Variability Studies in Bread Wheat (Triticum Aestivum L.) Genotypes at Kulumsa Agricultural Research Center, South East Ethiopia

机译:埃塞俄比亚东南部Kulumsa农业研究中心的面包小麦(Triticum Aestivum L.)基因型的遗传变异性研究

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摘要

Sixty four bread wheat genotypes were tested in a simple lattice design at Kulumsa Agricultural Research Center during 2014/15 main cropping seasonto estimate the extent of genetic variability. The genotypes showed significant variation for all the traitsstudied except for biomass yield ha-1 and relatively wide range of the mean values for most of the characters indicated the existence of variations among the tested genotypes.Moderate PCV and GCV were recorded for 1000 kernel weight, grain yield, harvest index, number of grains spike-1 and number of productive tiller. High heritability values were observed for days to heading, days to maturity, grain filling period, 1000 kernel weight, number of spikelet spike-1, spike length and plant height. Moderate PCV and GCV were recorded for 1000 kernel weight, grain yield, harvest index, number of grains spike-1 and number of productive tiller. Among the characters 1000 kernel weight showed high values of genetic gain whereas days to maturity, grain yield, harvest index, productive tillers and number of grains plant-1 had moderate values of genetic advance as percent of mean (GAM). The D2 analysis showed that the 64 genotypes were clustered into nine clusters. Maximum inter cluster distance was observed between cluster I and IX (D2=5112.1), followed by that between clusters III and IX (D2=4694.4) and VIII and IX (D2=3871.9) which had shown they were genetically more divergent from each other than any other clusters. Crosses between genotypes selected from cluster I with cluster IX, cluster III with cluster IX and cluster VIII with cluster IX are expected to produce relatively better genetic recombination and segregation in their progenies.Principal components (PC1 to PC6) having Eigenvalue greater than one (significant), accounted 77.20% of the total variation. The first two principal components PC1 and PC2 with values of 22.3% and 17.4% respectively, contributed more to the total variation. According to their mean performance, genotypes Alidoro (5955.0 ± 480.83261a), Dure (5627.5 ± 604.57630ab) and Sanate (5322.5±781.35299abc) were the best yielders. The present result is only an indication and we cannot reach a definite conclusion. Therefore, it is advisable to continue with this study over several years and locations. Keywords: Genetic variability, Heritability, PCV, GCV, Genetic advance
机译:在2014/15年度主季,在Kulumsa农业研究中心以简单的点阵设计对64种面包小麦的基因型进行了测试,以评估遗传变异的程度。除了生物量产量ha-1以外,所有研究的性状的基因型均表现出显着差异,并且大多数特征的平均值均值范围相对较宽,表明测试的基因型之间存在差异.1000粒重记录了中等PCV和GCV,谷物产量,收获指数,穗粒数-1和生产分till数量。抽穗期,成熟期,籽粒充实期,1000粒重,小穗穗数-1,穗长和株高观察到高遗传力值。记录中度PCV和GCV的1000粒重,籽粒产量,收获指数,穗粒数1和生产分number数。在这些特征中,1000粒重显示出较高的遗传增益值,而成熟天数,谷物产量,收获指数,生产分till和五株植株1的遗传进步值均值为中等(GAM)。 D2分析显示64个基因型被聚集成9个聚类。在群集I和IX之间观察到最大群集间距离(D2 = 5112.1),然后在群集III和IX之间(D2 = 4694.4)以及群集VIII和IX之间(D2 = 3871.9)观察到最大距离,这表明它们在遗传上彼此更接近比任何其他集群。预期从集群I与集群IX,集群III与集群IX和集群VIII与集群IX的基因型之间的杂交将在其后代中产生相对更好的遗传重组和分离。特征值大于1(重要)的主成分(PC1至PC6) ),占总变化的77.20%。前两个主成分PC1和PC2的值分别为22.3%和17.4%,对总变化的贡献更大。根据它们的平均表现,基因型Alidoro(5955.0±480.83261a),Dure(5627.5±604.57630ab)和Sanate(5322.5±781.35299abc)是产量最高的品种。目前的结果只是一个指示,我们不能得出明确的结论。因此,建议继续进行数年和不同地点的研究。关键字:遗传变异,遗传力,PCV,GCV,遗传进展

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