朱砂根种质资源表型性状遗传多样性分析
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1.福建农林大学风景园林与艺术学院;2.厦门市园林植物园;3.福建省武平南坊国有林场;4.福建省龙岩市林业种苗站

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福建省林业科技项目:朱砂根盆花种质资源提升与产品质量控制技术研究(闽林科便函〔2020〕9号);福建省种业创新与产业化工程(2021-2025年)项目:朱砂根(富贵籽)种业创新与产业化开发(ZYCX-LY-202104);厦门市社会发展领域指导性项目:朱砂根种质创新及果色形成机理研究(3502Z2024ZD4013)


Genetic Diversity Analysis of Phenotypic Traits in Ardisia crenata Germplasm Resources
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Fujian Forestry Science and Technology Project: Research on the Enhancement of Germplasm Resources and Product Quality Control Technology of Ardisia crenata Potted Flowers (Letter of Fujian Forestry Science and Technology [2020] No.9); Fujian Seed Industry Innovation and Industrialisation Project (2021-2025): Ardisia crenata (Fuguizi) Seed Industry Innovation and Industrialisation Development (ZYCX-LY-202104); Xiamen Municipal Directed Project in the Field of Social Development: Research on Germplasm Innovation and Fruit Color Formation Mechanism of Ardisia crenata (3502Z2024ZD4013)

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    摘要:

    为了研究朱砂根(Ardisia crenata Sims)种质资源表型多样性,对56份朱砂根种质资源的32个表型性状进行分析。多样性分析结果表明56份朱砂根种质存在丰富的变异,18个质量性状的Shannon-Wiener指数变化范围为0.3~1.247,均值为0.734;14个数量性状Shannon-Wiener指数1.931~2.071,均值2.007,变异系数8.98%~46.32%,均值23.3%。相关性分析结果表明,果枝部位颜色的相关性显著,主干和果枝的生长数量性状之间呈极显著相关。主成分分析结果表明,8个主成分累计贡献率达到76.34%,主要为植株与果枝长度,果实、叶片等颜色,是朱砂根种质表型差异的主要因素;筛选获得5个综合得分高的朱砂根优良种质资源。聚类分析可将56份朱砂根种质分为6个类群,不同类群间表型性状存在较大差异。丰富的表型多样性和变异类型为朱砂根优良种质资源的选育、开发和利用奠定了基础。

    Abstract:

    To explore the phenotypic diversity of A. crenata germplasm resources, 32 phenotypic traits of 56 A. crenata germplasm resources were analyzed. Diversity analyses showed that 56 A. crenata germplasm had enriched variation, with the Shannon-Wiener indices of 18 qualitative traits varying from 0.3 to 1.247, with a mean value of 0.734, and 14 quantitative traits with Shannon-Wiener indices ranging from 1.931 to 2.071, with a mean value of 2.007, and coefficients of variation 8.98%-46.32%, mean value 23.3%. The results of the correlation analysis showed that the correlation of the color of fruiting branch parts was significant, and there was a highly significant correlation between the growth quantity traits of the main stem and fruiting branches. Principal component analysis indicated that eight principal components with a cumulative contribution of 76.34%, mainly plant and fruiting branch length, fruit and leaf color, were the main factors for phenotypic differences in A. crenata germplasm; five excellent germplasm resources of A. crenata with high composite scores were obtained by screening. Cluster analysis could classify the 56 A. crenata germplasm into six taxa, and there were large differences in phenotypic traits among different taxa. The abundant phenotypic diversity and varietal types provide a basis for the selection, development, and utilization of superior germplasm resources of A. crenata.

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  • 收稿日期:2024-05-28
  • 最后修改日期:2024-10-28
  • 录用日期:2024-11-12
  • 在线发布日期: 2024-11-12
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