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Diversity in nutritional composition of Swiss chard (Beta vulgaris subsp. L. var. cicla) accessions revealed by multivariate analysis

机译:多变量分析揭示了瑞士甜菜(Beta vulgaris亚种L. var。cicla)种的营养成分多样性

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Mineral concentration levels in cultivated vegetables have received very little concern in the context of biodiversity despite the fact that most vegetables have a rich micronutrient composition. Swiss chard is an important salad crop which is high yielding and rich in minerals, vitamins and phenolic compounds. It is also extremely easy to grow. However, there is a lack of information on the genetic variability of mineral concentration of Swiss chard. Mineral composition diversity of 54 genetically diverse Swiss chard accessions, representative of all Turkish Swiss chard genetic resources, was investigated using multivariate analysis. These traits are useful in evaluating germplasm diversity in the nutritional concentration context and for use in further breeding programmes which will focus on improving mineral concentrations in Swiss chard cultivars. The results displayed significant differences among accessions and remarkably high nutrient contents. The data gathered were analyzed using principal components (PCs) and cluster analysis and revealed five major groupings. The data also observed 74.39% of total variation. The first three PCs accounted for 49.86% of the total variation in the population. Present values provided great variability among accessions and the results demonstrate that it is possible to identify genetic differentiation among Swiss chard accession for some nutritional elements. The genetic resources that exist indicate that potentially important accessions could be used as a gene source due to their high levels of K, Ca, Cu and Zn in breeding programmes.
机译:尽管大多数蔬菜具有丰富的微量营养素成分,但在生物多样性的背景下,栽培蔬菜中的矿物质浓度水平很少受到关注。瑞士甜菜是一种重要的色拉作物,产量高,富含矿物质,维生素和酚类化合物。它也非常容易生长。但是,关于瑞士甜菜矿物质浓度的遗传变异性缺乏信息。使用多变量分析研究了54种遗传多样的瑞士甜菜种质的矿物组成多样性,这些种质代表了所有土耳其瑞士甜菜遗传资源。这些性状可用于在营养浓度范围内评估种质多样性,并用于进一步的育种计划,这些计划的重点是提高瑞士甜菜品种的矿物质浓度。结果显示不同种质之间存在显着差异,并且营养成分含量显着较高。使用主成分(PC)和聚类分析对收集的数据进行分析,并揭示了五个主要分组。数据还观察到总变化的74.39%。前三台PC占总人口变异的49.86%。当前值提供了种质间的巨大差异,结果表明,有可能鉴定出瑞士甜菜种质中某些营养成分的遗传分化。现有的遗传资源表明,由于潜在的重要登录品在育种计划中的钾,钙,铜和锌含量较高,因此可以用作基因来源。

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