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Zhao ZH,Zhang YG,Gao K,Tian YK,Zhang QL,Fang ZJ,Wang S,Liu H,Ji YS,Dai SL. Variation and correlation analysis of florescence and main ornamental traits of Chrysanthemum × morifolium Ramat. varieties[J]. Plant Science Journal,2023,41(2):214−223. DOI: 10.11913/PSJ.2095-0837.22172
Citation: Zhao ZH,Zhang YG,Gao K,Tian YK,Zhang QL,Fang ZJ,Wang S,Liu H,Ji YS,Dai SL. Variation and correlation analysis of florescence and main ornamental traits of Chrysanthemum × morifolium Ramat. varieties[J]. Plant Science Journal,2023,41(2):214−223. DOI: 10.11913/PSJ.2095-0837.22172

Variation and correlation analysis of florescence and main ornamental traits of Chrysanthemum × morifolium Ramat. varieties

Funds: This work was supported by a grant from the Beijing Science and Technology Project (Z191100008519002).
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  • Received Date: August 09, 2022
  • Revised Date: October 20, 2022
  • Available Online: May 05, 2023
  • Using natural and hybrid populations of chrysanthemum as experimental materials, we analyzed the variation characteristics and correlations of florescence and ornamental characters among different varieties, then compared and analyzed the results to provide a basis for screening hybrid parents and breeding good varieties of early-flowering chrysanthemums. Results showed that the coefficients of variation of the eight traits in the natural chrysanthemum population were higher than 15%, except for flowering stage traits. Analysis showed a significant negative correlation between flowering stage and number of stem leaves. There was a highly significant negative correlation between flowering duration and flowering stage, and a highly significant positive correlation between flowering duration and number of ray flower turns. Among the eight traits in the hybrid populations, the coefficients of variation were higher than 15%, except for flowering traits, but the coefficients of variation for florescence traits of each hybrid population were also significantly higher than that of the natural population. Compared with other hybrid populations, the petal types and flower colors of hybrid populations Ⅲ and Ⅴ were more abundant, with earlier flowering stages. Analysis showed a highly significant negative correlation between flowering stage and petal type, number of ray flower turns, and number of stem leaves, and a significant negative correlation between flowering stage and flower color. There was a highly significant positive correlation between flowering duration and number of tubular flower turns and number of tubular flowers, a highly significant negative correlation between flowering duration and petal type, and a significant negative correlation between flowering duration and flower color. There was a highly significant positive correlation between flowering stage and flowering duration. Therefore, progeny plants with wider variation in flowering stage can be obtained through sexual hybridization, with new chrysanthemum varieties showing earlier flowering. Early flowering parents can be selected according to the characteristics of fewer leaves, more ray flower turns, petals close to flat petals, and flower color close to orange and pink lines. Sexual hybridization with varieties exhibiting better flower type and color can be carried out to obtain better early flowering varieties of Chrysanthemum with stable flowering stage from late September to early October.

  • [1]
    陈俊愉. 中国菊花过去和今后对世界的贡献[J]. 中国园林,2005,21(9):73−75. Chen JY. Contributions of Chinese chrysanthemum to the world in the past and future[J]. Chinese Landscape Architecture,2005,21 (9):73−75.

    Chen JY. Contributions of Chinese chrysanthemum to the world in the past and future[J]. Chinese Landscape Architecture, 2005, 21(9): 73-75.
    [2]
    吴丽娜. 《红楼梦》菊花诗的拟题、分配与意象[J]. 明清小说研究,2021(4):121−135. doi: 10.3969/j.issn.1004-3330.2021.04.008
    [3]
    戴思兰,王文奎,黄家平. 菊属系统学及菊花起源的研究进展[J]. 北京林业大学学报,2002,24(5-6):234−238. Dai SL,Wang WK,Huang JP. Advances of researches on phylogeny of Dendranthema and origin of chrysanthemum[J]. Journal of Beijing Forestry University,2002,24 (5-6):234−238.

    Dai SL, Wang WK, Huang JP. Advances of researches on phylogeny of Dendranthema and origin of chrysanthemum[J]. Journal of Beijing Forestry University, 2002, 24(5-6): 234-238.
    [4]
    戴思兰. 中国菊花的魅力[J]. 中国园林,2012,28(8):46−48. Dai SL. The fascinations of Chinese chrysanthemum[J]. Chinese Landscape Architecture,2012,28 (8):46−48.

    Dai SL. The fascinations of Chinese chrysanthemum[J]. Chinese Landscape Architecture, 2012, 28(8): 46-48.
    [5]
    秦忠文. 中国传统菊花栽培起源与花文化发展[D]. 武汉: 华中农业大学, 2006: 20−33.
    [6]
    李学松, 季玉山, 戴思兰. 百菊图话[M]. 北京: 化学工业出版社, 2013: 10−40.
    [7]
    张树林, 戴思兰. 中国菊花全书[M]. 北京: 中国林业出版社, 2013: 120−133.
    [8]
    赵小刚. 日中性小菊新品种选育及小菊开花期遗传分析[D]. 北京: 北京林业大学, 2019: 1−10.
    [9]
    秦贺兰. 夏花型小菊新品[J]. 中国花卉园艺,2006(20):46−49.
    [10]
    宋彬,刘景安. 宿根花卉花期调控的研究进展[J]. 北方园艺,2020(1):122−127. Song B,Liu JA. Research advance of flowering time regulator for perennial flower[J]. Northern Horticulture,2020 (1):122−127.

    Song B, Liu JA. Research advance of flowering time regulator for perennial flower[J]. Northern Horticulture, 2020(1): 122-127.
    [11]
    张秋玲,刘海鹏,高康,孔德元,戴思兰. 盆栽菊花反季节开花调控技术研究[J]. 黑龙江农业科学,2021(9):62−67. Zhang QL,Liu HP,Gao K,Kong DY,Dai SL. Research on anti-seasonal flowering control technology of potted chrysanthemum[J]. Heilongjiang Agricultural Sciences,2021 (9):62−67.

    Zhang QL, Liu HP, Gao K, Kong DY, Dai SL. Research on anti-seasonal flowering control technology of potted chrysanthemum[J]. Heilongjiang Agricultural Sciences, 2021(9): 62-67.
    [12]
    张莉俊,戴思兰. 菊花种质资源研究进展[J]. 植物学报,2009,44(5):526−535. Zhang LJ,Dai SL. Research advance on germplasm resources of Chrysanthemum × morifolium[J]. Bulletin of Botany,2009,44 (5):526−535.

    Zhang LJ, Dai SL. Research advance on germplasm resources of Chrysanthemum × morifolium[J]. Bulletin of Botany, 2009, 44(5): 526-535.
    [13]
    雒新艳,宋雪彬,戴思兰. 中国传统大菊品种数量性状变异及其概率分级[J]. 北京林业大学学报,2016,38(1):101−111. Luo XY,Song XB,Dai SL. Variation and probability grading of quantitative characters of traditional chrysanthemum cultivars[J]. Journal of Beijing Forestry University,2016,38 (1):101−111.

    Luo XY, Song XB, Dai SL. Variation and probability grading of quantitative characters of traditional chrysanthemum cultivars[J]. Journal of Beijing Forestry University, 2016, 38(1): 101-111.
    [14]
    雒新艳. 大菊品种资源遗传多样性研究[D]. 北京: 北京林业大学, 2009: 32−42.
    [15]
    牛雅静,张蒙蒙,孟昕. 观赏植物托桂花型的研究进展[J]. 安徽农业科学,2021,49(24):29−32. Niu YJ,Zhang MM,Meng X. Research progress on anemone type of ornamental plants[J]. Journal of Anhui Agricultural Sciences,2021,49 (24):29−32.

    Niu YJ, Zhang MM, Meng X. Research progress on anemone type of ornamental plants[J]. Journal of Anhui Agricultural Sciences, 2021, 49(24): 29-32.
    [16]
    宋雪彬,高康,戴思兰,季玉山,王朔,刘昊. 菊花新品种‘东篱知秋’[J]. 园艺学报,2020,47(S2):3024−3025. Song XB,Gao K,Dai SL,Ji YS,Wang S,Liu H. A new large-flowered chrysanthemum cultivar ‘Dongli Zhiqiu’[J]. Acta Horticulturae Sinica,2020,47 (S2):3024−3025.

    Song XB, Gao K, Dai SL, Ji YS, Wang S, Liu H. A new large-flowered chrysanthemum cultivar ‘Dongli Zhiqiu’[J]. Acta Horticulturae Sinica, 2020, 47(S2): 3024-3025.
    [17]
    张玉鸽, 高康, 刘芷兰, 宋雪彬, 戴思兰. 不同开花期大菊品种观赏性状综合分析[C]//中国观赏园艺研究进展2018. 哈尔滨: 中国园艺学会, 2018: 50−58.

    Zhang YG, Gao K, Liu ZL, Song XB, Dai SL. Analysis of florescence ornamental characters on chrysanthemum cultivars[C]//Advances in Ornamental Horticulture of China 2018. Harbin: Chinese Society for Horticultural Science, 2018: 50-58.
    [18]
    雒新艳,张俊丽,张二海. 大菊主要数量性状分析及其应用探讨[J]. 江苏农业科学,2015,43(7):161−163.
    [19]
    张蒙蒙, 王青, 戴思兰, 季玉山, 王朔. 盆栽小菊表型性状筛选与品种分类研究[C]//中国观赏园艺研究进展2014. 青岛: 中国园艺学会, 2014: 111−117.

    Zhang MM, Wang Q, Dai SL, Ji YS, Wang S. The screening of the phenotypic traits and taxonomic study for potted chrysanthemum[C]//Advances in Ornamental Horticulture of China 2014. Qingdao: Chinese Society for Horticultural Science, 2014: 111−117.
    [20]
    许兰杰,梁慧珍,余永亮,谭政委,杨青,李磊. 菊花种质综合评价体系构建及优异种质筛选[J]. 北方园艺,2022(12):55−63. Xu LJ,Liang HZ,Yu YL,Tan ZW,Yang Q,Li L. Establishment of comprehensive evaluation of chrysanthemum germplasm and selection of elite resource[J]. Northern Horticulture,2022 (12):55−63.

    Xu LJ, Liang HZ, Yu YL, Tan ZW, Yang Q, Li L. Establishment of comprehensive evaluation of chrysanthemum germplasm and selection of elite resource[J]. Northern Horticulture, 2022(12): 55-63.
    [21]
    高康, 宋雪彬, 戴思兰, 季玉山, 王朔. 基于AHP法的大菊杂种F1代新品种筛选[C]//中国观赏园艺研究进展2016. 长沙: 中国园艺学会, 2016: 127−133.

    Gao K, Song XB, Dai SL, Ji YS, Wang S. AHP-based screening of traditional chrysanthemum hybrid F1 for new variety[C]//Research Progress of Ornamental Horticulture in China 2016. Changsha: Chinese Society for Horticultural Science, 2016: 127-133.
    [22]
    宋雪彬,高康,黄河,刘芷兰,戴思兰,嵇彧. 中国传统大菊叶片形态的数量化定义与分类[J]. 植物学报,2021,56(1):10−24. Song XB,Gao K,Huang H,Liu ZL,Dai SL,Ji Y. Quantitative definition and classification of leaves in large-flowered Chinese chrysanthemum based on the morphological traits[J]. Bulletin of Botany,2021,56 (1):10−24.

    Song XB, Gao K, Huang H, Liu ZL, Dai SL, Ji Y. Quantitative definition and classification of leaves in large-flowered Chinese chrysanthemum based on the morphological traits[J]. Bulletin of Botany, 2021, 56(1): 10-24.
    [23]
    盖钧益, 章元明, 王建康. 植物数量性状遗传体系[M]. 北京: 科学出版社, 2003: 1−20.
    [24]
    冯俊杰,赵文达,张新全,刘英杰,袁帅,等. 引种日本多花黑麦草标准品种DUS性状变异分析及应用[J]. 中国农业科学,2022,55(12):2447−2460. Feng JJ,Zhao WD,Zhang XQ,Liu YJ,Yuan S,et al. DUS traits variation analysis and application of standard varieties of Lolium multiflorum introduced from Japan[J]. Scientia Agricultura Sinica,2022,55 (12):2447−2460.

    Feng JJ, Zhao WD, Zhang XQ, Liu YJ, Yuan S, et al. DUS traits variation analysis and application of standard varieties of Lolium multiflorum introduced from Japan[J]. Scientia Agricultura Sinica, 2022, 55(12): 2447-2460.
    [25]
    中华人民共和国农业农村部. GB/T 19557.19-2018 植物品种特异性、一致性和稳定性测试指南 菊花[S]. 北京: 中国标准出版社, 2018.

    Ministry of Agriculture and Rural Affairs of the People’s Republic of China. GB/T 19557.19-2018 Guidelines for the conduct of tests for distinctness, uniformity and stability-Chrysanthemum × morifolium Ramat. (Chrysanthemum × grandiflorum Ramat.), Chrysanthemum pacificum Nakai (Ajania pacifica Bremer and Humphries) and hybrids between them[S]. Beijing: Standards Press of China, 2018.
    [26]
    杜世坤,赵宝勰,赵振宁,高玉芳,李雨阳,等. 间作用大豆亲本的相关性、主成分及聚类分析[J]. 分子植物育种,2022,20(1):266−275. Du SK,Zhao BX,Zhao ZN,Gao YF,Li YY,et al. Correlation analysis,principal component analysis and cluster analysis in parent selection of intercropping soybean[J]. Molecular Plant Breeding,2022,20 (1):266−275.

    Du SK, Zhao BX, Zhao ZN, Gao YF, Li YY, et al. Correlation analysis, principal component analysis and cluster analysis in parent selection of intercropping soybean[J]. Molecular Plant Breeding, 2022, 20(1): 266-275.
    [27]
    杨群力,李思锋. 大丽花三种园艺性状之间相关性的研究[J]. 中国农学通报,2009,25(23):295−302. Yang QL,Li SF. Study on relativity among three gardening characters of dahlia pinnata[J]. Chinese Agricultural Science Bulletin,2009,25 (23):295−302.

    Yang QL, Li SF. Study on relativity among three gardening characters of dahlia pinnata[J]. Chinese Agricultural Science Bulletin, 2009, 25(23): 295-302.
    [28]
    徐肇友,肖德卿,沈斌,肖纪军,陈杏林,周志春. 秀丽四照花叶色参数和叶形性状的变异及相关性分析[J]. 植物资源与环境学报,2021,30(1):61−68. Xu ZY,Xiao DQ,Shen B,Xiao JJ,Chen XL,Zhou ZC. Variation and correlation analyses on leaf color parameters and leaf shape traits of Cornus hongkongensis subsp. elegans[J]. Journal of Plant Resources and Environment,2021,30 (1):61−68.

    Xu ZY, Xiao DQ, Shen B, Xiao JJ, Chen XL, Zhou ZC. Variation and correlation analyses on leaf color parameters and leaf shape traits of Cornus hongkongensis subsp. elegans[J]. Journal of Plant Resources and Environment, 2021, 30(1): 61-68.
    [29]
    赵芳,魏玮,张晓磊,宋国亮,王晓明,等. 224个谷子品种农艺性状聚类和相关性分析[J]. 种子,2022,41(1):74−83. Zhao F,Wei W,Zhang XL,Song GL,Wang XM,et al. Clustering and correlation analysis of agronomic traits of 224 millet varieties[J]. Seed,2022,41 (1):74−83.

    Zhao F, Wei W, Zhang XL, Song GL, Wang XM, et al. Clustering and correlation analysis of agronomic traits of 224 millet varieties[J]. Seed, 2022, 41(1): 74-83.
    [30]
    吴瑞,刘文辉,张永超,秦燕,魏小星,刘敏洁. 青藏高原老芒麦落粒性及农艺性状相关性研究[J]. 草业学报,2021,30(4):130−139. Wu R,Liu WH,Zhang YC,Qin Y,Wei XX,Liu MJ. A study of the correlation between seed shattering and agronomic traits of Elymus sibiricus on the Qinghai-Tibetan Plateau[J]. Acta Prataculturae Sinica,2021,30 (4):130−139.

    Wu R, Liu WH, Zhang YC, Qin Y, Wei XX, Liu MJ. A study of the correlation between seed shattering and agronomic traits of Elymus sibiricus on the Qinghai-Tibetan Plateau[J]. Acta Prataculturae Sinica, 2021, 30(4): 130-139.
    [31]
    王旭,高致明,张红瑞,张景景,马彦秋,元玉碧. 6个药用菊花栽培类型生长势及抗性综合评价[J]. 河南农业大学学报,2012,46(2):131−135. Wang X,Gao ZM,Zhang HR,Zhang JJ,Ma YQ,Yuan YB. Comprehensive evaluation of the growth potential and resistance in six cultivars of medicinal Chrysanthemum morifolium[J]. Journal of Henan Agricultural University,2012,46 (2):131−135. doi: 10.3969/j.issn.1000-2340.2012.02.004

    Wang X, Gao ZM, Zhang HR, Zhang JJ, Ma YQ, Yuan YB. Comprehensive evaluation of the growth potential and resistance in six cultivars of medicinal Chrysanthemum morifolium[J]. Journal of Henan Agricultural University, 2012, 46(2): 131-135, 151. doi: 10.3969/j.issn.1000-2340.2012.02.004
    [32]
    吴盼婷,王江民,沈佳逾,杨友翠,管志勇,等. 不同菊花品种根系、地上部和叶片相关指标分析及抗逆性评价[J]. 植物资源与环境学报,2017,26(2):46−54. Wu PT,Wang JM,Shen JY,Yang YC,Guan ZY,et al. Analyses on related indexes of root,above-ground part and leaf of different cultivars of Chrysanthemum morifolium and stress resistance evaluation[J]. Journal of Plant Resources and Environment,2017,26 (2):46−54.

    Wu PT, Wang JM, Shen JY, Yang YC, Guan ZY, et al. Analyses on related indexes of root, above-ground part and leaf of different cultivars of Chrysanthemum morifolium and stress resistance evaluation[J]. Journal of Plant Resources and Environment, 2017, 26(2): 46-54.
    [33]
    马杰,徐婷婷,苏江硕,杨信程,房伟民,等. 菊花F1代舌状花耐寒性遗传变异与QTL定位[J]. 园艺学报,2018,45(4):717−724. Ma J,Xu TT,Su JS,Yang XC,Fang WM,et al. Genetic variation and QTL mapping for cold tolerance of ray florets in an F1 population of Chrysanthemum morifolium[J]. Acta Horticulturae Sinica,2018,45 (4):717−724.

    Ma J, Xu TT, Su JS, Yang XC, Fang WM, et al. Genetic variation and QTL mapping for cold tolerance of ray florets in an F1 population of Chrysanthemum morifolium[J]. Acta Horticulturae Sinica, 2018, 45(4): 717-724.
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