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JIANG Dan-Dan, ZHOU Jing, CHANG Zhao-Yang. Seed Morphology and Its Taxonomic Significance of Spiraea L. in China[J]. Plant Science Journal, 2015, 33(5): 579-594. DOI: 10.11913/PSJ.2095-0837.2015.50579
Citation: JIANG Dan-Dan, ZHOU Jing, CHANG Zhao-Yang. Seed Morphology and Its Taxonomic Significance of Spiraea L. in China[J]. Plant Science Journal, 2015, 33(5): 579-594. DOI: 10.11913/PSJ.2095-0837.2015.50579

Seed Morphology and Its Taxonomic Significance of Spiraea L. in China

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  • Received Date: May 29, 2015
  • Revised Date: July 14, 2015
  • Published Date: October 27, 2015
  • The seed morphology of 29 taxa (including 25 species and 4 varieties) from Spiraea L. in China was studied using light microscopy (LM) and scanning electron microscopy (SEM). Results showed that seeds of Spiraea were narrowly linear to elliptic in shape, with testa lustrous and striate, reddish brown to dark brown in color. Ornamentation of seed coat was ascribed into four types, reticulate, double reticulate, areolate and chainlike reticulate. The ratio of seed length to width (L/W) supported the traditional division of the subgroups in this genus. Seed surface sculpture may have definite systematic importance in the taxonomy of Spiraea species.
  • [1]
    陆玲娣.中国蔷薇科绣线菊亚科的演化、分布——兼述世界绣线菊亚科植物的分布[J].植物分类学报,1996,34(4): 361-375.
    [2]
    Barthlott W. Microstructural features of seed surfaces[M]// Heywood VH, Moor DM eds. Current Concepts in Plant Taxonomy. London, Orlando: Academic Press, 1984: 95-105.
    [3]
    Corner EJH. The Seeds of Dicotyledons: Vol. 1 [M]. Cambridge: Cambridge University Press, 1976: 228-231.
    [4]
    Ralph EB, Carol K. Seed morphology under SEM and light microscopy in Kansas Juncus (Juncuaceae) [J]. Brittonia,1986, 38(3): 201-209.
    [5]
    郑纪庆,孙稚颖,李法曾.中国独行菜属种皮微形态特征的研究[J].植物研究,2006,26(3): 291-296.
    [6]
    李艳,刘全儒,陈旭波.卫矛属冬青卫矛组种皮和假种皮微形态研究[J].武汉植物学研究,2008,26(4): 350-356.
    [7]
    石祥刚,李凯凯,宋晓虹,叶创兴.柃属植物种子微形态特征及其系统学意义[J].植物科学学报,2012,30(2): 107-115.
    [8]
    周卓,陈光富,张建文,牛洋,李志敏,孙航.蓝钟花属的种子形态学研究及其分类学意义[J].植物分类与资源学报,2013,35(3): 265-272.
    [9]
    Nasr MH, Kadry N, Abdel K. Systematic significance of seed morphology in the genus Veronica (Plantaginaceae), with special reference to the Egyptian taxa[J]. J Syst Evol, 2014, 52(2): 215-230.
    [10]
    Amin ED, Mohamed HA, Ehab AK, Abdel-Halem MA, Halan HL. Studies on the Rosaceae Ⅰ— Seed and/or achene macro and micromorphology[J]. Pakistan J Biol Sci, 2003,6(20): 1778-1791.
    [11]
    刘长江,林祁,贺建秀.中国种子植物形态学研究方法和术语[J].西北植物学报,2004,24(1): 178-188.
    [12]
    Potter D, Still SM, Grebenc T, Ballian D, Bo?i? G, Franji J, Kraigher H. Phylogenetic relationships in tribe Spiraeeae (Rosaceae) inferred from nucleotide sequence data[J]. Plant Syst Evol, 2007, 266 (1): 105-118.
    [13]
    Roman B. Review of Chinese Spiraea (Rosaceae, Spiraeoideae) with simple inflorescences[J]. Novon, 2011, 21(3): 299-316.
    [14]
    刘全儒,尹祖棠.中国北部绣线菊属的花粉形态及分类学意义[J].广西植物,1994,14(3): 231-236.
    [15]
    中国科学院中国植物志编辑委员会. 中国植物志:第36卷[M].北京:科学出版社,1974:1-67.
    [16]
    Rehder A. Manual of Cultivated Trees and Shrubs Hardy in North America[M]. New York: Macmillan,1940, 2: 99.
    [17]
    Pojarkova AI. Flora URSS[M]. Moscow and Leningrad: Academic Science Press of URSS, 1939, 9: 187-251.
    [18]
    Lu LD, Crinan A. Flora of China:Vol. 9[M]. Beijing: Science Press, St. Louis: Missouri Botanical Garden Press, 2003: 47-73.
    [19]
    赵一之, 王铁娟. 关于蒙古绣线菊毛枝变种及回折绣线菊的学名订正[J]. 木本植物研究, 2000, 20(3): 257-259.
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