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Abordagem multivariada na seleção de progênies de soja superiores e portadoras do gene RR

机译:选育优良大豆后代和RR基因携带者的多元方法

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摘要

Efficiency in the use of genetic variability, whether existing or created, increases when properly explored and analysed. Incorporation of biotechnology into breeding programs has been the general practice. The challenge for the researcher is the constant development of new and improved cultivars. The aim of this experiment was to select progenies with superior characteristics, whether or not carriers of the RR gene, derived from bi-parental crosses in the soybean, with the help of multivariate techniques. The experiment was carried out in a family-type experimental design, including controls, during the agricultural year 2010/2011 and 2011/2012 in Jaboticabal in the Brazilian State of São Paulo. From the F3 generation, phenotypically superior plants were selected, which were evaluated for the following traits: number of days to flowering; number of days to maturity; height of first pod insertion; plant height at maturity; lodging; agronomic value; number of branches; number of pods per plant; 100-seed weight; number of seeds per plant; grain yield per plant. Given the results, it appears possible to select superior progeny by principal component analysis. Cluster analysis using the K-means method links progeny according to the most important characteristics in each group and identifies, by the Ward method and by means of a dendrogram, the structure of similarity and divergence between selected progeny. Both methods are effective in aiding progeny selection.
机译:如果进行了适当的探索和分析,无论是否存在,利用遗传变异的效率都会提高。将生物技术纳入育种计划已成为普遍做法。研究人员面临的挑战是不断开发新品种和改良品种。该实验的目的是借助多变量技术,选择具有优异特性的后代,无论是否是源自大豆双亲杂交的RR基因的携带者。该实验是在2010/2011年和2011/2012年农业年度在巴西圣保罗州的Jaboticabal进行的,包括对照在内的家庭型实验设计。从F3代中选择表型优良的植物,对其进行以下性状评估:开花的天数;到期天数;第一个吊舱插入高度;成熟时的株高;住宿;农艺价值分行数量;每株豆荚的数量; 100粒重每棵植物的种子数;单株谷物产量。根据结果​​,通过主成分分析似乎可以选择优良的后代。使用K均值方法的聚类分析根据每个组中最重要的特征将子代联系起来,并通过Ward方法和树状图来识别所选子代之间的相似性和差异结构。两种方法都可以有效地帮助后代选择。

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