植物生理生化

矮牵牛新种质的花色表型及花色素分析

  • 李雅琪 ,
  • 刘心怡 ,
  • 过雪莹 ,
  • 潘俊松 ,
  • 唐东芹
展开
  • (1. 上海交通大学设计学院,上海 200240;2. 上海交通大学农业与生物学院,上海 200240)

收稿日期: 2021-10-07

  修回日期: 2021-10-19

  网络出版日期: 2021-10-30

基金资助

上海市农委科技兴农项目(沪农科推字(2019)第1-8号)

Analyses of Flower Color Phenotype and Flower Pigments of Petunia hybrida New Germplasms

  • LI Ya-qi ,
  • Liu Xin-yi ,
  • GUO Xue-ying ,
  • Pan Jun-song ,
  • Tang Dong-qin
Expand
  • (1. School of Design, Shanghai Jiao Tong University, Shanghai 200240, China; 2. School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China)

Received date: 2021-10-07

  Revised date: 2021-10-19

  Online published: 2021-10-30

摘要

以27个上海交通大学自育矮牵牛新种质为研究材料,对花色这一重要观赏性状及其花色素进行了系统研究。用RHSCC比色和色差仪测色方法描述了矮牵牛的花色表型,通过特征显色反应初步判断了矮牵牛的花色素类型,以标准曲线法和pH示差法等方法测定了矮牵牛3类花色素的含量。研究表明:这27个矮牵牛种质的花色可归于5个色系,以紫红色和红色为主;矮牵牛花色在CIELab表色系统中分布较广,而且不同色系花色参数的区分度较大。矮牵牛花瓣中含有类黄酮和花色苷,不含或含少量类胡萝卜素。13个被测种质的花瓣类黄酮含量在2.5~12.2 mg·/g–1 ·FW之间,花色苷含量在0.08~3.88 mg·g–1 FWmg/g·FW之间,而类胡萝卜素在矮牵牛花瓣中含量很低,远远低于类黄酮含量,在7个被测种质中,最高仅为0.216 mg·g–1 FWmg/g·FW,最低为0.004 mg·g–1 FWmg/g·FW。以上结果显示,5个色系矮牵牛所含花色素种类不尽相同,含量也有明显差异,其中紫红色系和红色系花瓣大多不含或含极少量类胡萝卜素,黄色系、白色系和紫色系花瓣的类黄酮含量较高,紫色系和紫红色系花瓣花色苷含量较高。

本文引用格式

李雅琪 , 刘心怡 , 过雪莹 , 潘俊松 , 唐东芹 . 矮牵牛新种质的花色表型及花色素分析[J]. 亚热带植物科学, 2021 , 50(05) : 378 -387 . DOI: 10.3969/j.issn.1009-7791.2021.05.008

Abstract

In this study, 27 new self-bred germplasms of Petunia hybrida were selected to study the flower color and their pigments. The flower color phenotype of P. hybrida was described by RHSCC and colorimeter, the pigment types in their petals were preliminarily determined by color reaction, and the content of three kinds of pigments in petals of selected P. hybrida was determined by standard curve method or pH differential method. The flower color of all germplasms could be classified into 5 series, and the color ranges mainly from purplish red to red. The flower color of P. hybrida was widely distributed in CIELab color system, and the color parameters were distinguished greatly in petunia petals with different color. The petals of P. hybrida contained flavonoids and anthocyanins, but no or little carotenoids. The flavonoid content in petals of 13 tested germplasms ranged from 2.5?to 12.2 mg·g–1 FWmg/g·FW, in which the anthocyanin content ranged from 0.03 to 3.88 mg·g–1 FWmg/g·FW. The carotenoid content in petunia petals was much lower than the content of flavonoids, the highest and the lowest value was present 0.216?mg·g–1 FWmg/g·FW and 0.004 mg·g–1 FWmg/g·FW, respectively. Taken together, the type and the content of pigments were different in the petunia petals within different color; no or little carotenoids were detected in petals of most petunia germplasms of purplish red and red series; a high level of flavonoids was observed in petals of yellow, white and purple petunias, and the content of anthocyanins in petals of purple and purplish red petunias was also relatively high.

参考文献

[1] 魏跃, 李振陆, 陈啸寅, 王永平, 戴金平, 张蜀宁. 二、四倍体矮牵牛农艺性状与耐热性比较研究[J]. 福建农业学报, 2010, 25(2): 187–191. [2] 闫明旭, 夏珣, 郭余龙, 王莉, 李名扬. 矮牵牛育种发展及品种应用[J]. 南方农业, 2000, 3(3): 93–97. [3] 代色平, 包满珠. 矮牵牛育种研究进展[J]. 植物学通报, 2004, 22(4): 385–391. [4] 余秋岫. 紫花含笑花色形成的生理及分子机理研究[D]. 中南林业科技大学, 2021. [5] Li J J, Lian X Y, Ye C L, Wang L. Analysis of flower color variations at different developmental stages in two honeysuckle (Lonicera Japonica Thunb.) cultivars[J]. HortScience, 2019, 54(5): 779–782. [6] Lu C F, Li Y F, Wang J Y, Qu J P, Chen Y, Chen X Y, Huang H, Dai S L. Flower color classification and correlation between color space values with pigments in potted multiflora chrysanthemum[J]. Scientia Horticulturae, 2021, 283: 110082. [7] Xu W J, Luo G J, Yu F Y, Jia Q X, Zheng Y, Bi X Y, Lei J J. Characterization of anthocyanins in the hybrid progenies derived from Iris dichotoma and I. domestica by HPLC-DAD-ESI/MS analysis[J]. Phytochemistry, 2018, 150: 60–74. [8] 白新祥, 胡可, 戴思兰, 王亮生. 不同花色菊花品种花色素成分的初步分析[J]. 北京: 北京林业大学学报, 2006, 28(5): 84–89. [9] Tanaka Y, Sasaki N, Ohmiya A. Biosynthesis of plant pigments: anthocyanins, betalains and carotenoids[J]. The Plant Journal, 2008, 54(4): 733–749. [10] Zhao D, Tao J. Recent advances on the development and regulation of flower color in ornamental plants[J]. Frontiers in plant science, 2015, 6: 261. [11] Zhang Y Y, Zhou T H, Dai Z W, Dai X Y, Li W, Cao M X, Li C R, Tsai W-C, Wu X Q, Zhai J W, Liu Z J, Wu S S. Comparative transcriptomics provides insight into floral color polymorphism in a Pleione limprichtii orchid population[J]. International Journal of Molecular Sciences, 2019, 21(1): 247. [12] 杨翅春, 于静娟, 赵倩, 朱登云, 敖光明. 玉米花青素调节基因Lc对转基因烟草和矮牵牛花色的影响[J]. 农业生物技术学报, 2007, 15(1): 85–89. [13] 梁娴, 罗充. 矮牵牛花色素成分的初步分析[J]. 兴义民族师范学院学报, 2011, 16(5): 121–124. [14] 祝钦泷. 转查尔酮异构酶(CHI)基因矮牵牛花色改变及其花器官变异的研究[D]. 重庆: 西南农业大学, 2004: 53–54, 57–58. [15] 赵昶灵, 郭维明, 陈俊愉. 梅花花色色素种类和含量的初步研究[J]. 北京林业大学学报, 2004, 26(2): 68–73. [16] 任玉锋, 马永平, 王文丽. 金银花花色素的种类和含量的研究[J]. 安徽农业科学, 2015, 43(2): 90–93. [17] 甘林鑫, 李厚华, 杨晨, 明莉, 韩美玲, 辛转霞. 不同花色牡丹品种花瓣色素含量及成分分析[J]. 北方园艺, 2020, 42(5): 67–73. [18] 段晶晶. 卵叶牡丹叶片花青素合成相关MYB筛选、克隆与功能验证[D]. 咸阳: 西北农林科技大学, 2019. [19] 郑茜子. 不同花色系杜鹃色素分析及美容杜鹃组培快繁体系建立[D]. 咸阳: 西北农林科技大学, 2016. [20] 宋德群, 孟宪军, 王晨阳, 王冠群, 吕春茂. 蓝莓花色苷的pH示差法测定[J]. 沈阳农业大学学报, 2013, 44(2): 231–233. [21] 陈肖英, 郑平, 徐明全, 赵贵林. 空间诱变对矮牵牛花色变异的影响研究初报[J]. 广东农业科学, 2007, 39(1): 39–40. [22] 徐怡倩, 袁媛, 陶秀花, 杨娟, 史益敏, 唐东芹. 小苍兰花瓣主要花色苷组分研究[J]. 植物研究, 2016, 36(2): 184–189. [23] 葛雨萱, 王亮生, 徐彦军, 刘政安, 李崇晖, 贾妮. 蜡梅的花色和花色素组成及其在开花过程中的变化[J]. 园艺学报, 2008, 35(9): 1331–1338. [24] 程怡. 月季‘仙境’花色素组分及影响花色呈色因子分析[D]. 成都: 四川农业大学, 2014. [25] 戴亮芳, 温秀芳, 罗向东. 不同花色杜鹃花色素成分与稳定性分析研究[J]. 安徽农业科学, 2013, 41(14): 6455–6458. [26] 陈中媛, 卢山, 黄继荣. 植物类胡萝卜素代谢工程与应用[J]. 生命科学, 2011, 23(2): 205–211. [27] 戴思兰, 洪艳. 基于花青素苷合成和呈色机理的观赏植物花色改良分子育种[J]. 中国农业科学, 2016, 49( 3): 529–542. [28] 郁晶晶, 唐东芹, 李欣. 香雪兰花瓣的花色苷组成[J]. 广西植物, 2020, 40(5): 687–695. [29] 陶秀花, 袁媛, 徐怡倩, 史益敏, 唐东芹. 风信子花瓣花色苷组成分析[J]. 园艺学报, 2015, 42 (2): 301–310.
文章导航

/