Advance Search
ZHANG Zhi-Peng, ZHANG Yang, ZHANG Zhao, QI Yao-Dong, ZHANG Ben-Gang, SUO Feng-Mei, CHEN Yao. Population Survival Status and Chemical Characterization of Wild Phellodendron amurense Rupr. in China[J]. Plant Science Journal, 2016, 34(3): 381-390. DOI: 10.11913/PSJ.2095-0837.2016.30381
Citation: ZHANG Zhi-Peng, ZHANG Yang, ZHANG Zhao, QI Yao-Dong, ZHANG Ben-Gang, SUO Feng-Mei, CHEN Yao. Population Survival Status and Chemical Characterization of Wild Phellodendron amurense Rupr. in China[J]. Plant Science Journal, 2016, 34(3): 381-390. DOI: 10.11913/PSJ.2095-0837.2016.30381

Population Survival Status and Chemical Characterization of Wild Phellodendron amurense Rupr. in China

Funds: 

This work was supported by grants from the National Natural Science Foundation of China (81473305) and National Science and Technology Foundational Special Project (2015FY111500).

undefined

More Information
  • Received Date: January 19, 2016
  • Revised Date: February 15, 2016
  • Available Online: October 31, 2022
  • Published Date: June 27, 2016
  • Phellodendron amurense Rupr. is an endangered species and common medicinal plant with a long history in China. However, wild resources suffered severe damage from the 1960s to 1990s, and have, thus far, exhibited poor recovery. In this study, we researched population density and structure based on an extensive survey of 38 wild populations in the Yanshan, Qianshan, Changbaishan, Zhangguangcailing and Xiaoxing'anling mountains in norther and northeastern China, and applied HPLC to research the regional characteristics of alkaloid composition, including that of berberine, palmatine, phellodendrine, magnoflorine, and jatrorrhizine. The population structure of P. amurense showed a spindle shape, with the percentage of young and adult individuals being 13.9% and 68.0%, respectively. Overall, this showed a severe recession trend and seriously threatened condition due to the low numbers of young plants and insufficient natural regeneration. Chemical data showed that berberine, palmatine, phellodendrine, and total alkaloid content in P. amurense was the highest in Qianshan Mountain and the lowest in Xiaoxing'anling Mountain, with both showing significant differences compared with contents from the other three mountains. We conclud that the wild population distribution area of P. amurense is declining in China. Furthermore, the population age structure shows a decreasing trend and populations with few individuals have not managed self-restoration. The alkaloid content of P. amurense from low latitude areas, such as Qianshan Mountain, is significantly higher, which should be taken into consideration in regards to medicinal production.
  • [1]
    傅立国. 中国植物红皮书-稀有濒危植物[M]. 北京: 科学出版社, 1992: 572-573.

    Fu LG. China Plant Red Data Book: Vol. 1: Rare and Endangered Plants[M]. Beijing: Science Press, 1992: 572-573.
    [2]
    聂绍荃, 李世友. 黑龙江省中药材-关黄柏的研究[J]. 东北林业大学学报, 1989, 17(1): 1-8.

    Nie SQ, Li SY. Studies on the genuine Chinese medicine-"Guan Huang Bai" in Heilongjiang Province[J]. Journal of Northeast Forestry University, 1989, 17(1): 1-8.
    [3]
    中华人民共和国药典委员会. 中华人民共和国药典: 一部[S]. 北京: 中国医药科技出版社, 2010: 99, 214.

    Chinese Pharmacopoeia Commission. Chinese Pharmacopoeia: Part [STBZ]Ⅰ[STXFZ][S]. Beijing: China Medical Science Press, 2010: 99, 214.
    [4]
    国家环境保护局, 中国科学院植物研究所. 中国珍稀濒危保护植物名录[M].北京: 科学出版社, 1987: 22.

    State Bureau of Environmental Protection, Institute of Botany, Chinese Academy of Sciences. The List of Chinese Rare and Endangered Plants[M]. Beijing: Science Press, 1987: 22.
    [5]
    刘琰璐. 黄檗种子质量标准及休眠生理研究[D]. 北京: 北京协和医学院, 2012: 3.

    Liu YL. Research on quality criteria and dormancy mechanism of Phellodendron amurense Rupr. seeds[D]. Beijing: Peking Union Medical College, 2012: 3.
    [6]
    张晓玲. 黄檗果皮水溶性化感物质的初步研究[D]. 北京: 北京协和医学院, 2010: 3. Zhang XL. A study of water-soluble allelopathy in Phellodendron amurense Rupr. peels[D]. Beijing: Peking Union Medical College, 2010: 3.
    [7]
    张昭, 夏天睿, 陶月红, 戴灵超, 刘琰璐, 张本刚. 黄檗果皮提取物化感作用的研究[J]. 中国中药杂志, 2011, 36(3): 285-288.

    Zhang Z, Xia TR, Tao YH. Study on allelopathy effect of pericarp extract of Phellodendron amurense[J]. China Journal of Chinese Materia Medica, 2011, 36(3): 285-288.
    [8]
    戴灵超. 黄檗落叶化感物质的初步研究[D]. 北京: 北京协和医学院, 2011: 3.

    Dai LC. A study of allelopathy in Phellodendron amurense Rupr. leaves[D]. Beijing: Peking Union Medical College, 2011: 3.
    [9]
    王晗. 黄柏苷化感作用的研究[D]. 北京: 北京协和医学院, 2012: 3.

    Wang H. Research on allelopathic effects of phellamurine[D]. Beijing: Peking Union Medical College, 2012: 3.
    [10]
    戴灵超, 斯建勇, 刘琰璐, 张昭. 黄檗落叶化学成分的研究[J]. 天然产物研究与开发, 2012(7): 900-902, 927.

    Dai LC, Si JY, Liu YL, Zhang Z. Chemical constituents from leaves of Phellodendron amurense Rupr.[J]. Natural Product Research and Development, 2012(7): 900-902, 927.
    [11]
    夏天睿. 野生黄檗自我更新障碍的种内因素及化学成分多样性研究[D]. 北京:北京协和医学院, 2006: 3. Xia TR. Studies on internal factors of self-regenration obstacle for wild population of Phellodendron amurense and on their chemical components diversity[D]. Beijing: Peking Union Medical College, 2006: 3.
    [12]
    贺秀霞, 戴灵超, 张晓玲, 周学刚, 张昭. 不同种质及生长年限关黄柏中生物碱含量变化规律的研究[J]. 中国农学通报, 2010, 26(13): 114-117.

    He XX, Dai LC, Zhang XL, Zhou XG, Zhang Z. Research in the variation of the alkaloid contents from different germplasm and growth years of Phellodendron amurenses[J]. Chinese Agricultural Science Bulletin, 2010, 26(13): 114-117.
    [13]
    闫志峰, 张本刚, 张昭, 于俊林. 珍稀濒危药用植物黄檗野生种群遗传多样性的AFLP分析[J]. 生物多样性, 2006, 14(6): 488-497.

    Yan ZF, Zhang BG, Zhang Z, Yu JL. Genetic diversity in wild populations of Phellodendron amurense, a rare and endangered medicinal plant, detected by AFLP[J]. Biodiversity Science, 2006, 14(6): 488-497.
    [14]
    中国科学院中国植物志编辑委员会. 中国植物志:第43卷,第2分册[M]. 北京:科学出版社, 2004: 100.

    Editorial Board of Flora Reipublicae Popularis Sinicae. Flora of Reipublicae Populars Sinicae: Vol. 43, No. 2[M]. Beijing: Science Press, 2004: 100.
    [15]
    周振, 陈喜军, 薛茂贤. 世界主要用材树种概论[M]. 北京: 中国林业出版社, 1997: 163-165.

    Zhou Z, Chen XJ, Xue MX. The World's Major Timber Species[M]. Beijing: China Forestry Press, 1997: 163-165.
    [16]
    中国药材公司. 中国常用中药材[M]. 北京: 科学出版社, 1995: 906.

    China National Traditional Chinese Medicine Corporation. China Commonly Used Traditional Chinese Medicine[M]. Beijing: Science Press, 1995: 906.
    [17]
    徐丽娇. 东北地区天然黄檗种群生物碱含量差异多尺度分析[D]. 东北林业大学, 2013. Xu LJ. Multi-scale difference analysis of alkaloid content in natural populations of Phellodendron amurenses distributed in northeast of China[D]. Harbin: Northeast Forestry University, 2013.
    [18]
    吴晓玲. 黄波罗在山西省的引种驯化[J]. 山西林业科技, 2001(1): 21-22.

    Wu XL. Phellodendron amurense introductions and habituations into Shanxi Province[J]. Shanxi Forestry Science and Technology, 2001(1): 21-22.
    [19]
    Biging GS, Dobberti MA. Evaluation of competition indices in individual tree growth models[J]. For Sci, 1995, 41(2): 360-377
    [20]
    Ma K,Li GY,Zhu CX,Xia GH. Population structure and distribution patterns of the rare and endangered Ardisia violacea (Myrsinaceae)[J]. Acta Ecologica Sinica, 2013, 33(2): 72-79.
    [21]
    Kang HJ, Chen ZL, Liu P, Hao CY, Wei FM. The population structure and distribution pattern of Emmenopterys henryi in Dapanshan Natural Reserve of Zhejiang Province[J]. Acta Ecologica Sinica, 2007, 27(1): 389-396.
    [22]
    宋立奕, 郎南军, 郑科, 艾畅. 云南元谋干热河谷膏桐天然更新种群结构与分布格局研究[J]. 植物科学学报, 2012, 30(6): 558-567.

    Song LY, Lang NJ, Zheng K, Ai C. Population structure and spatial distribution patterns of a naturally regenerated Jatropha curcas L. population in a dry hot Yuanmou valley in Yunnan[J]. Plant Science Journal, 2012, 30(6): 558-567.
    [23]
    郭微, 上官铁梁, 王志明, 李润强. 灵空山油松种群年龄结构与动态分析[J]. 植物科学学报, 2013, 31(2): 130-135.

    Guo W, Shangguan TL, Wang ZM, Li RQ. Population structure and dynamics of Pinus tabulaeformis in Lingkong mountain of Shanxi[J]. Plant Science Journal, 2013, 31(2): 130-135.
    [24]
    Frost I, Rydin H. Spatial pattern and size distribution of the animal-dispersed tree Quercus robur in two spruce-dominated forests[J]. Ecoscience, 2000, 7(1): 38-44.
    [25]
    易雪梅, 张悦, 姬兰柱. 长白山黄檗种群结构[J]. 生态学杂志, 2013, 32(9): 2257-2262.

    Yi XM, Zhang Y, Ji LZ. Population structure of Phellodendron amurense in Changbai Mountains of Northeast China[J]. Chinese Journal of Ecology, 2013, 32(9): 2257-2262.
    [26]
    Zhang Y, Zhang ZP, Liu HT, Zhang BG, Liao YH, Zhang Z. Quantitative and chemical fingerprint analysis for quality evaluation of the dried bark of wild Phellodendron amurense Rupr. based on HPLC-DAD-MS combined with chemometrics methods[J]. Anal Methods, 2015, 7(5): 2041-2049.
    [27]
    杨明, 丁立威, 丁乡. 关黄柏产销趋势分析[J]. 中国现代中药, 2013, 15(4): 336-339.

    Yang M, Ding LW, Ding X. Trend analysis of the cortex phellodendri production and marketing[J]. Modern Chinese Medicine, 2013, 15(4): 336-339.
    [28]
    秦彦杰, 王洋, 阎秀峰. 中国黄檗资源现状及可持续利用对策[J]. 中草药, 2006, 37(7): 1104-1107.

    Qin YJ, Wang Y, Yan XF. Status and sustainable utilization strategy of Phellodendron amurense resources in China[J]. Chinese Traditional and Herbal Drugs, 2006, 37(7): 1104-1107.
    [29]
    于俊林, 张昭, 张本刚, 周繇, 朱俊义. 长白山黄檗基本情况调查及保护[J]. 中草药, 2006, 37(3): 461-463.

    Yu JL, Zhang Z, Zhang BG, Zhou Y, Zhu JY. Survey of basic living conditions and protective measure on Phellodendron amurense in Changbai Mountain[J]. Chinese Traditional and Herbal Drugs, 2006, 37(3): 461-463.
    [30]
    宋超, 余琦殷, 于梦凡, 邢韶华, 刘润泽, 曲宏, 黄三祥. 北京地区黄檗种群数量结构及空间分布特征[J]. 生态学杂志, 2015, 34(11): 3040-3049.

    Song C, Yu QY, Yu MF, Xing SH, Liu RZ, Qu H, Huang SX. Population structure and spatial distribution characte-ristics of Phellodendron amurense in Beijing[J]. Chinese Journal of Ecology, 2015, 34(11): 3040-3049.
    [31]
    李静贤. 北京山区野生黄檗数量特征研究[D]. 北京: 北京林业大学, 2013: 37-44.

    Li JX. Study on quantitative characteristics of wild Phellodendron amurense in Beijing mountainous area[D]. Beijing: Beijing Forestry University, 2013: 37-44.
    [32]
    李霞. 环境因子对黄檗幼苗生长及主要药用成分含量的影响[D]. 哈尔滨:东北林业大学, 2006.

    Li X. Effect of environmental factors on the growth and principal medicinal compositions of amur corktree seedlings[D]. Harbin: Northeast Forestry University, 2006.
  • Related Articles

    [1]HU Guang-ming, XIA Wen-juan, ZHENG Li, RAO Hang-kong, LEI Ming, WANG Jian, ZHAO Ting-ting, LI Zuo-zhou, ZHONG Cai-hong. Investigation and fruit genetic diversity analysis of wild Actinidia germplasm resources in Tongshan County, Hubei Province[J]. Plant Science Journal, 2021, 39(6): 620-631. DOI: 10.11913/PSJ.2095-0837.2021.60620
    [2]Chen Mei-Yan, Zhao Ting-Ting, Liu Xiao-Li, Han Fei, Zhang Peng, Zhong Cai-Hong. Factor analysis and comprehensive evaluation of fruit quality of ‘Jinyan’ kiwifruit (Actinidia eriantha×Actinidia chinensis)[J]. Plant Science Journal, 2021, 39(1): 85-92. DOI: 10.11913/PSJ.2095-0837.2021.10085
    [3]WANG Rong, HE Zhi-Chong, FANG Xue-Min, CHEN Dan-Li, WANG Qi, MENG Jia-Song, ZHAO Da-Qiu. Analysis of Phenotypic Diversity of Paeonia lactiflora Cultivars in Yangzhou[J]. Plant Science Journal, 2016, 34(6): 901-908. DOI: 10.11913/PSJ.2095-0837.2016.60901
    [4]LIU Li-Yan, CAI Xin-Bin, JIANG Xiao-Heng, WAN Xian-Chong. Species Composition and Floral Components of Vascular Plants in Ganjiahu Nature Reserve of Xinjiang[J]. Plant Science Journal, 2016, 34(5): 695-704. DOI: 10.11913/PSJ.2095-0837.2016.50695
    [5]YANG Xiao-Hui, ZHAO Xue-Li, GAO Xin-Fen. Morphological Variation and ITS Sequence Analysis of the Indigofera szechuensis Complex[J]. Plant Science Journal, 2015, 33(6): 727-733. DOI: 10.11913/PSJ.2095-0837.2015.60727
    [6]CAI Jun-Long, LU Jin-Qing, LI Qiang, GUO Sheng-Nan, DAI Yi. Analysis on Volatile Components of Caryophylli Flos from Different Habitats[J]. Plant Science Journal, 2015, 33(2): 251-258. DOI: 10.11913/PSJ.2095-0837.2015.20251
    [7]CHEN Sui-Qing, SONG Jun, CUI Can. Research and Evaluation on Chemical Fingerprints of Diterpenoids from Rabdosia rubescens[J]. Plant Science Journal, 2012, 30(5): 519-527. DOI: 10.3724/SP.J.1142.2012.50519
    [8]SHU Xiao, YANG Zhi-Ling, YANG Xu, DUAN Hong-Ping, YU Hua-Hui, LIU Ruo-Nan. Variation in Traits of Magnolia officinalis Seedlings from Different Provenances and Their Principal Component Analysis[J]. Plant Science Journal, 2010, 28(5): 623-630.
    [9]PENG Ling, ZHU Bi-Feng. Analysis and Evaluation of the Nutritional Components of Fleshy Fruit and Fleshy Leaf in Camellia oleifera Abel.[J]. Plant Science Journal, 2010, 28(4): 486-490.
    [10]YUAN Ping, YUAN Xiao. Analysis on the Constituents of the Absolute Oil of Lysimachia foenum-graceum Hance and Study on the Application of the Insecticidal Activity of Its Components[J]. Plant Science Journal, 2007, 25(4): 417-420.
  • Cited by

    Periodical cited type(24)

    1. 胡星,胡纪龙,张敏,刘娇,黄晓霞. 外源NO对盐胁迫下八角金盘叶片生理特性及解剖结构的影响. 西南林业大学学报(自然科学). 2025(01): 68-77 .
    2. 张伟溪,丁密,苏晓华,李爱平,王小江,余金金,李政宏,黄秦军,丁昌俊. 小叶杨×欧洲黑杨杂交F_1代生长及叶片解剖结构杂种优势分析与抗旱性评价. 南京林业大学学报(自然科学版). 2025(01): 46-58 .
    3. 赵莹. 叶形与叶色在园林景观设计中的应用. 分子植物育种. 2025(02): 622-627 .
    4. 邱彦芬,杨湉,吴裕. 基于叶片解剖结构评价不同倍性橡胶树无性系抗旱性. 热带农业科技. 2024(02): 61-67 .
    5. 萨其拉,张霞,朱琳,康萨如拉. 长期不同放牧强度下荒漠草原优势种无芒隐子草叶片解剖结构变化. 植物生态学报. 2024(03): 331-340 .
    6. 胡光明,肖涛,彭家清,李大卫,田华,王华玲,肖丽丽,程均欢,黄海雷,吴伟,钟彩虹. 基于叶片形态及显微特征评价12个猕猴桃栽培品种的抗旱性. 果树学报. 2024(05): 911-928 .
    7. 刘柯珍,何诚. 微观视角下防火树种特征研究动态. 西南林业大学学报(自然科学). 2024(03): 212-220 .
    8. 肖刚,赵峰,李世民,刘帅,路艳. 高速公路中央分隔带绿化植物对干旱胁迫的生理响应和抗旱性评价. 山东交通科技. 2024(03): 81-85 .
    9. 罗玲,刘伟,梁东,马一君,李然,吕秀兰. 不同架形对阳光玫瑰葡萄叶幕生态和高温下应逆生理的影响. 果树学报. 2024(12): 2444-2462 .
    10. 侯立伟,鲁绍伟,李少宁,赵娜,徐晓天. 城市绿化灌木耐旱性评价及灌溉制度研究进展. 世界林业研究. 2023(01): 45-51 .
    11. 孙一鑫,马乐乐,苗丽丽,何佳星,李建明. 基于光辐射时滞效应的温室番茄蒸腾量模型的构建. 西北农林科技大学学报(自然科学版). 2023(02): 83-92 .
    12. 何桥,向海洋,向芳,黄明,陈栋,向素琼,郭启高,梁国鲁,熊伟. 野生李用于巫山脆李砧木的适宜性研究. 西南大学学报(自然科学版). 2023(03): 74-87 .
    13. 马静,贺熙勇,陶亮,吴超,李志强,宫丽丹. 基于叶片解剖结构的澳洲坚果种质资源抗旱性评价. 热带作物学报. 2023(07): 1392-1399 .
    14. 仇杰,高超,罗洪发. 贵州西北喀斯特区古茶树叶片解剖结构及抗旱性评价. 西北植物学报. 2023(07): 1170-1184 .
    15. 董淑龙,马姜明,莫燕华,黎露. 红花檵木种质资源与应用研究综述. 广西林业科学. 2022(02): 290-297 .
    16. 董志君,高健洲,于晓南. 烯效唑对盆栽芍药生理特性及显微结构的影响. 北京林业大学学报. 2022(07): 117-125 .
    17. 王菲,程小毛,肖云龙,黄晓霞. 千家寨野生古茶树叶片解剖结构和化学组分计量特征对海拔梯度的适应. 生态学杂志. 2021(07): 1958-1968 .
    18. 景晨娟,陈雪峰,王端,季文章,武晓红. 三个李子品种叶片结构差异及其抗旱性分析. 北方园艺. 2021(15): 27-34 .
    19. 钟灶发,张利娟,高思思,彭婷. 干旱胁迫下4种柑橘砧木叶片细胞学特征及抗旱性比较. 园艺学报. 2021(08): 1579-1588 .
    20. 周荧,王頔,聂飞. 贵州省两个蓝莓品种组培苗和扦插苗干旱胁迫响应. 南方农业. 2021(20): 171-174+178 .
    21. 郭燕,张树航,李颖,张馨方,王广鹏. 中国板栗238份品种(系)叶片形态、解剖结构及其抗旱性评价. 园艺学报. 2020(06): 1033-1046 .
    22. 董章宏,尹亚梅,徐剑,李显煌,瞿绍宏,辛静,常晓勇,辛培尧. 滇杨雌、雄株茎叶解剖结构差异分析. 云南农业大学学报(自然科学). 2020(03): 502-510 .
    23. 谭莎,赖路伟,黄永芳,叶小萍,谭健彬,许雄坚. 3个山茶品种对干旱胁迫的生理响应. 亚热带植物科学. 2020(05): 335-339 .
    24. 崔杰,洪文君,刘俊,陈伟玉,何书奋,罗金环. 极小种群野生植物海南假韶子结构解剖特征研究. 广东农业科学. 2019(11): 31-36 .

    Other cited types(23)

Catalog

    Article views (1133) PDF downloads (1311) Cited by(47)

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return