首页> 外文期刊>International Journal of Plant & Soil Science >Genotype by Trait Relations between Yield and some Morphological Traits of Coconut (Cocos nucifera L.) Hybrid Varieties Based on GT Biplot
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Genotype by Trait Relations between Yield and some Morphological Traits of Coconut (Cocos nucifera L.) Hybrid Varieties Based on GT Biplot

机译:基于GT Biplot的椰子(Cocos nucifera L.)杂交品种产量与某些形态性状的特质关系基因型

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The objective of this study was to evaluate the coconut hybrid varieties based on Genotype by Traits (GT) biplot to examine its usefulness in visualizing coconut trait relationship and its application in genotypes comparison. The experimental design was a randomized complete block design with two replications; each block consisted of 5 plots with a total of eight palms per plot while the remaining palms were used as guard rows. This experiment was conducted at the Main Research Station of the Nigerian Institute for Oil Palm Research (NIFOR), Benin City, Edo State, Nigeria. The materials for the present study consisted of 5 hybrid varieties of Coconut palm. Data on individual palms were recorded on seven quantitative traits: thickness of petiole (TP), number of fronds (NFD), number of leaflets (NL), number of fruits per palm (NF), number of bunches per palm (NB), width of leaflet (WL) and circumference of the stem 20 cm from the soil level (CF).The GT biplot analysis revealed close associations among the studied traits. The two axes explained 90.4% of the total variation among the cultivars due to the various traits measured thus reflecting the accuracy of inter-relationships among the measured characters. Correlation coefficient between the studied traits showed that there is a strong positive relationship between number of fruit and number of bunches. These two traits were however negatively correlated with other traits except number of fronds. Based on the Auto Find QTL function of GGE biplot, bunch yield and width of leaflets were identified as traits suiTable for indirect selection for nut yield improvement. H4 was identified as an ideal genotype as it combines several good traits in its genetic composition and thus could serve as a good genetic raw material from which better cultivars, synthetic varieties and pure lines can be developed. H1 was the best in terms of nut and bunch yields, indicating that it can be used as parents in the development of hybrid varieties and populations that are outstanding in these traits.
机译:这项研究的目的是评估基于特质(GT)双图的椰子杂交品种,以检查其在可视化椰子性状关系中的有用性及其在基因型比较中的应用。实验设计是具有两个重复的随机完整区组设计。每个街区由5个地块组成,每个地块总共有八棵棕榈树,其余的棕榈树被用作保护行。该实验是在尼日利亚伊多州贝宁市的尼日利亚油棕研究所(NIFOR)的主要研究站进行的。本研究的材料由5种椰子棕榈杂种组成。在七个定量特征上记录了单个棕榈的数据:叶柄的厚度(TP),叶状体的数量(NFD),小叶的数量(NL),每棵棕榈的果实数(NF),每棵棕榈的束数(NB),小叶的宽度(WL)和茎的周长距土壤水平(CF)20厘米。GT双线图分析揭示了所研究性状之间的紧密关联。由于测量的各种性状,两个轴解释了品种间总变异的90.4%,从而反映了被测性状之间相互关系的准确性。研究的性状之间的相关系数表明,果实数量与束数之间存在很强的正相关关系。然而,这两个性状与除叶状体数量以外的其他性状呈负相关。根据GGE双图的自动查找QTL函数,将束产量和小叶宽度确定为suiTable的性状,用于间接选择以提高坚果产量。 H4被认为是理想的基因型,因为它在遗传组成上结合了几个良好的性状,因此可以作为良好的遗传原料,从中可以培育出更好的品种,合成品种和纯系。就坚果和串茎产量而言,H1是最好的,表明它可以用作杂交种和这些性状突出的群体的亲本。

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