Leaf structure characteristics of five species of Cymbidium
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摘要: 采用光学显微镜和体视镜,对兰属5种植物(春兰、蕙兰、建兰、寒兰、墨兰)的叶结构特征(叶脉结构、叶表皮结构、解剖结构)进行了观察和测量。结果显示,兰属5种植物的叶脉结构相似,叶表皮结构和解剖结构存在较大差异,其中最主要的差异是皮下纤维束的多少和边缘角质层锯齿形态。依据叶结构特征聚类分析结果,5种兰可分为春兰组、建兰组和墨兰组3组。本研究表明叶结构特征对兰属5种植物的分类具有重要意义。Abstract: Leaf architectural characteristics (vein architecture, epidermal architecture, and anatomical architecture) of five species of Cymbidium (Cymbidium goeringii (Rchb. f.) Rchb. f, C. faberi Rolfe, C. ensifolium (L.) Sw., C. kanran Makino, and C. sinense (Jackson ex Andr.) Willd.) were observed and measured using optical microscopy and stereomicroscopy. Results showed that among the five plants, vein architectures were similar but there were significant differences in the epidermal and anatomical architectures, mainly in the quantity of fiber bundles and structure of stratum corneum edge. Based on cluster analysis of the leaf structure characteristics, the five species of orchid could be divided into C. goeringii formation, C. ensifolium formation, and C. sinense formation. This study showed that leaf structure characteristics have great significance for the classification of these five species of Cymbidium.
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[1] 吴应祥, 陈心启. 国产兰属分类研究[J]. 植物分类学报, 1980, 18(3):292-307. Wu YX, Chen XQ. Domestic orchid classification research[J]. Journal of Systematics and Evolution, 1980, 18(3):292-307.
[2] 吴应祥.中国兰花[M]. 北京:中国林业出版社, 1993:26-64. [3] Dahi JM, Hanne R. Stegmata in Orchidales:character state distribution and polarity[J]. Bot J Linn Soc, 1984, 89:53-76.
[4] De Oliveira MIU, Reboucas DA, Leite KRB, De Oliveira RP, Funch LS. Can leaf morphology and anatomy contri-bute to species delimitation? A case in the Campomanesia xanthocarpa complex (Myrtaceae)[J]. Flora, 2018, 249:111-123.
[5] 张健, 闻志彬, 张明理. 中国木蓼属植物叶表皮微形态特征及其分类学意义[J]. 植物资源与环境学报, 2013, 22(2):8-17. Zhang J, Wen ZB, Zhang ML. Leaf epidermal micro-morphological characteristics of Atraphaxis Linn. (Polygonaceae) in China and its taxonomical significance[J]. Journal of Plant Resources and Environment, 2013, 22(2):8-17.
[6] 曹小燕, 曹明, 邓敏. 中国水青冈属(壳斗科)叶结构及分类学意义[J]. 植物分类与资源学报, 2014, 36(1):1-6. Cao XY, Cao M, Deng M. Leaf architecture and its taxonomic significance in fagus (fagaceae) within China[J]. Plant Diversity and Resources, 2014, 36(1):1-6.
[7] 石祥刚, 黎运钦, 李成仁, 宋晓虹, 叶创兴. 柃属植物叶宏观结构及其分类学意义[J]. 植物研究, 2009, 29(5):517-523. Shi XG, Li YQ, Li CR, Song XH, Ye CX. Leaf architecture of Eurya and its taxonomic significance[J]. Bulletin of Botanical Research, 2009, 29(5):517-523.
[8] 曹明, 曹丽敏, 张奠湘, 张瑞泉. 中国花椒属(广义)叶结构研究[J]. 广西植物, 2009, 29(2):163-170. Cao M, Cao LM, Zhang DX, Zhang RQ. Leaf architecture of Zanthoxylum (Rutaceae) from China and its taxonomic significance[J]. Guihaia, 2009, 29(2):163-170.
[9] Spicer RA. Pectinal veins:a new concept in terminology for the description of dicotyledonous leaf venation patterns[J]. Bot J Linn Soc, 1986, 93:379-388.
[10] Beth E, Douglas CD, Leo JH, Kirk RJ, John DM, Peter W, Scott LW. Manual of Leaf Architecture[M]. Beijing:Peking University Press, 2012:153-182.
[11] Cameron KM, Dickison WC. Foliar architecture of vanilloid orchids:insights into the evolution of reticulate leaf venation in monocotyledons[J]. Bot J Linn Soc, 1998:128:45-70.
[12] Stern WL, Judd WS. Systematic and comparative anatomy of Cymbidieae (Orchidaceae)[J]. Bot J Linn Soc, 2002, 139(1):1-27.
[13] 李爱民, 陈泽濂, 孙谷畴, 叶秀麟. 墨兰组织培养植株的叶结构和生理特性[J]. 生命科学研究, 2002, 6(1):68-73. Li AM, Chen ZL, Sun GC, Ye XL. Anatomical structure and physiological characters of leaves for Cymbidium sinense in vitro[J]. Life Science Research, 2002, 6(1):68-73.
[14] 李爱民,叶秀麟,陈功锡,陈泽濂. 墨兰的解剖学研究[J]. 热带亚热带植物学报,2002, 10(4):295-300. Li AM, Ye XL, Chen GX, Chen ZL. Anatomy of Cymbidium sinense (Andr.) Willd[J]. Journal of Tropical and Subtropical Botany, 2002, 10(4):259-300.
[15] 孙安慈. 兰属、兜兰属、石斛属植物叶片的扫描电镜观察[J]. 武汉植物学研究, 1995,13(4):289-294. Sun AC. Investigations on leaves of Cymbidium,Paphiopedilum,Dendrobium under scanning electron microscope[J]. Journal of Wuhan Botanical Research, 1995, 13(4):289-294.
[16] 马清温, 李凤兰, 李承森. 落羽杉属(杉科)叶表皮结构及气孔参数[J]. 植物分类学报, 2005, 43(6):517-525. Ma QW, Li FL, Li CS. Leaf epidermal structure and stomatal parameters of the genus Taxodium (Taxodiaceae)[J]. Acta Phytotaxonomica Sinica, 2005, 43(6):517-525.
[17] Zhang SM, Liu HY, Cheng JJ, Feng DY, Liu Z. Free-hand section techniques for clear observation of cell structures of millet (Setaria italica) and rice (Oyrza sativa) leaves[J]. Genomics and Applied Biology, 2015, 34(7):1527-1530.
[18] 王宇飞, 陶君容. 植物角质层分析术语新体系[J]. 植物学通报, 1991, 8(4):6-13. Wang YF, Tao JR. An introduction to a new system of terminology for plant cuticular analysis[J]. Chinese Bulletin of Botany, 1991, 8(4):6-13.
[19] 刘穆. 种子植物形态解剖学导论[M]. 5版. 北京:科学出版社, 2010:255-271. [20] Yukawa T, Stern WL. Comparative vegetative anatomy and systematics of Cymbidium (Cymbidieae:Orchidaceae)[J]. Bot J Linn Soc, 2002, 138(4):383-419.
[21] Zhang MY, Sun CY, Hao G, Ye XL, Liang CY, Zhu GH. A preliminary analysis of phylogenetic relationships in Cymbidium (Orchidaceae) base on nrITS sequence data[J]. Acta Bot Sin, 2002, 44(5):588-592.
[22] 文李, 叶庆生, 王小菁, 潘瑞炽. 利用RAPD技术分析兰属(Cymbidium)品种间的亲缘关系[J]. 应用与环境生物学报, 2001, 7(1):29-32. Wen L, Ye QS, Wang XJ, Pan RC. Analysis of relationship among Cymbidium cultivars using RAPD[J]. Chinese Journal of Applied and Environmental Biology, 2001, 7(1):29-32.
[23] 刘仲健, 陈心启, 茹正忠. 中国兰属植物[M]. 北京:科学出版社, 2006:25-28. [24] 蔡永立, 宋永昌. 浙江天童常绿阔叶林藤本植物的适应生态学:Ⅰ. 叶片解剖特征的比较[J]. 植物生态学报, 2001, 25(1):90-98. Cai YL, Song YC. Adaptive ecology of lianas in Tiantong evergreen broad-leaved forest, Zhejiang, China:Ⅰ. Leaf anatomical characters[J]. Acta Phytoecologica Sinica, 2001, 25(1):90-98.
[25] 路贵和, 刘学义, 张学武. 不同抗旱类型大豆品种气孔特性初探[J]. 山西农业科学, 1994, 22(4):8-11. Lu GH, Liu XY, Zhang XW. Preliminary study on stomatal characteristics in different types of drought-resistant soybean cultivars[J]. Journal of Shanxi Agricultural Sciences, 1994, 22(4):8-11.
[26] 中国科学院中国植物志编辑委员会. 中国植物志:第18卷:兰科[M]. 北京:科学出版社, 2004:213-223. -
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