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应用LH-PCR研究党参、麻黄和独一味内生细菌多样性
引用本文:李小林,江华明,张波,唐国庆,Petri Penttinen,曾珍,郑林用,张小平.应用LH-PCR研究党参、麻黄和独一味内生细菌多样性[J].生态学杂志,2013,24(9):2511-2517.
作者姓名:李小林  江华明  张波  唐国庆  Petri Penttinen  曾珍  郑林用  张小平
作者单位:(;1.四川省农业科学院土壤肥料研究所, 成都 610066; ;2.四川农业大学资源环境学院微生物系, 成都 611130; ;四川职业技术学院建筑与环境工程系, 四川遂宁 629000; ;四川农业大学动物科技学院, 四川雅安 625014; ;Department of Food and Environmental Sciences, University of Helsinki, FI 00014, Helsinki, Finland)
摘    要:通过直接提取药用植物样品的总DNA,采用长度多态片段PCR (length heterogeneity PCR, LH-PCR)技术研究四川省甘孜藏族自治州的党参、麻黄和独一味3种药用植物内生细菌多样性.结果表明: 同种植物根、茎、叶的LH-PCR图谱相似度很高,条带丰富度差别不大;但不同植物样品之间的差异较大.党参的植物样品条带丰富度最大,麻黄次之,独一味最低.3种药用植物中474 bp长度的细菌是绝对的优势菌群.植物内生细菌多样性与土壤速效磷呈负相关,而与土壤pH值呈正相关.海拔和土壤总氮是影响植物样品内生细菌多样性分布的两个重要环境因子.LH-PCR所得的种群信息能较直观地反映不同植物样品间细菌多样性的差异.因此LH-PCR适用于分析药用植物内生菌多样性.

关 键 词:药用植物  细菌多样性  免培养  LH-PCR

Endophytic bacterial diversity in Codonopsis pilosula, Ephedra sinica,and Lamiophlomis rotate: A study with LH-PCR.
LI Xiao-lin,JIANG Hua-ming,ZHANG Bo,TANG Guo-qing,Petri Penttinen,ZENG Zhen,ZHENG Lin-yong,ZHANG Xiao-ping.Endophytic bacterial diversity in Codonopsis pilosula, Ephedra sinica,and Lamiophlomis rotate: A study with LH-PCR.[J].Chinese Journal of Ecology,2013,24(9):2511-2517.
Authors:LI Xiao-lin  JIANG Hua-ming  ZHANG Bo  TANG Guo-qing  Petri Penttinen  ZENG Zhen  ZHENG Lin-yong  ZHANG Xiao-ping
Abstract:To investigate the endophytic bacterial diversity in the three medicinal plant species Codonopsis pilosula, Ephedra sinica, and Lamiophlomis rotata in Ganzi of Sichuan, Southwest China, the total DNA of the three species were extracted by stringent surface sterilization, and studied with length heterogeneity PCR (LH-PCR) method. For the same plant species, their root , stem , and leaf LH-PCR profiles were in a high level of similarity, with little differences in band richness. However, there existed great differences in the LH-PCR profiles among different plant species. C. pilosula had the biggest band richness, followed by E. sinica, and L. rotata. In the three plant species, the endophytic bacteria with an approximately 474 bp DNA length were dominant. The endophytic bacterial diversity of the plants was negatively correlated with rhizosphere soil available phosphorus content, but positively correlated with rhizosphere soil pH. Elevation and rhizosphere soil total nitrogen content were the important environmental factors affecting the distribution of enophytic bacteria in these plant species. The information of population diversity obtained from LH-PCR could more intuitively reflect the differences of bacterial diversity among different plant species, and thus, LH-PCR would be available to be used for analyzing the endophytic bacterial diversity in medicinal plants, providing information and guidance for the further isolation of microbial resources.
Keywords:medicinal plant  bacterial diversity  culture-independent  LH-PCR
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