分离性甘薯形态性状的多样性尼日利亚Umudike的基因型

G. I. Harry, Ulasi, J. Ifeanyi, Okoiseh G. Edith
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摘要

甘薯(Ipomoea batatas)基因型分析Lam)通常在形态特征上表现出很高的变异性。2017年,在尼日利亚阿比亚州乌穆代克国家根茎作物研究所进行了一项田间试验,以评估68个第一代(F1)甘薯基因型(Ligri PC)群体的形态多样性,这些基因型来自加纳库马西国际马铃薯中心通过多杂交系统生产的种子,其中包括两个地方对照品种(UMUSPO3和TIS87/0087)。试验采用随机完全区组设计,共设3个重复。利用形态描述符对红薯叶面和鲜根形态的16个性状进行了基因型评价。然后对数据进行方差分析,以确定测量的形态参数和农艺变量之间的任何差异。聚类分析表明,所有基因型均可根据其生理特征分为4个不同的类群。因此,庞大的基因库将提供有效的重组,以创造出具有高农业价值的可行甘薯品种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diversity among Morphological Traits of Segregating Sweetpotato [Ipomoea batatas (L.) Lam] Genotypes in Umudike, Nigeria
Genotypes of the sweet potato (Ipomoea batatas (L.) Lam) normally exhibit high variability in their morphological characters. A field experiment was carried out in 2017 at the National Root Crops Research Institute, Umudike, Abia State, Nigeria to assess the morphological diversity among the population of 68 first filial generation (F1) sweet potato genotypes (Ligri PC) derived from seeds produced through poly cross systems from the International Potato Center, Kumasi, Ghana, including two local check varieties (UMUSPO3 and TIS87/0087). A randomized complete block design with three replicates was used to set up this experiment. The morphology descriptor was used to evaluate the genotypes of sweet potatoes on sixteen characters that covered both folial and fresh storage root morphology. The data were then subjected to an analysis of variance to identify any differences between the measured morphological parameters and agronomic variables. Using cluster analysis, it was established that all of the genotypes could be categorized into four distinct groups based on their physical characteristics. Consequent, a vast gene pool would provide for effective recombination to create a viable sweetpotato variety with high agricultural value.
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