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铅锌矿区土壤真菌响应重金属污染的群落组成变化
引用本文:杨金水,杨扬,孙良明,刘伟杰,曾远,邓春萍,邢冠岚,袁红莉.铅锌矿区土壤真菌响应重金属污染的群落组成变化[J].北京大学学报(自然科学版),2017,53(2).
作者姓名:杨金水  杨扬  孙良明  刘伟杰  曾远  邓春萍  邢冠岚  袁红莉
作者单位:农业生物技术国家重点实验室,中国农业大学生物学院,北京100193;国家地质实验测试中心,北京,100037
基金项目:中国地质调查局地质调查工作项目
摘    要:为研究土壤真菌适应不同程度重金属污染的群落组成变化,以云南省勐糯铅锌矿区土壤样品为研究对象,通过对其重金属含量和理化性质聚类分析,选取5个重金属高污染和4个低污染样品为代表,提取土壤样品总DNA,利用Illumina Mi Seq测序技术对其进行测序分析,并在门、纲、目、科、属、种水平上,分析比较真菌的群落组成变化。研究结果表明,在高浓度重金属污染样品中,未被分类真菌占绝对优势,其次是Aspergillus,Un--s-Clavulinaceae sp.及Un--s-fungal sp.ARIZ L453等。污染低的样品中未被分类真菌也含有较高丰度,但低于高污染样品,其次是Geastrum,Aspergillus和Mortierella等。利用代表性差异分析技术(RDA)分析重金属对土壤真菌多样性的影响,发现Pb含量对微生物群落结构具有极显著影响。研究结果可为寻找表征重金属污染程度的"核心微生物"奠定一定的理论及实验基础。

关 键 词:铅锌矿  重金属污染  高通量测序  真菌群落组成

Characterization of Soil Fungal Community in Response to Heavy Metal Pollution in Lead-Zinc Mining Area
YANG Jinshui,YANG Yang,SUN Liangming,LIU Weijie,ZENG Yuan,DENG Chunping,XING Guanlan,YUAN Hongli.Characterization of Soil Fungal Community in Response to Heavy Metal Pollution in Lead-Zinc Mining Area[J].Acta Scientiarum Naturalium Universitatis Pekinensis,2017,53(2).
Authors:YANG Jinshui  YANG Yang  SUN Liangming  LIU Weijie  ZENG Yuan  DENG Chunping  XING Guanlan  YUAN Hongli
Abstract:Heavy metal contamination is one of the most concerned global environmental problems and the soil heavy metal contamination is especially severe in lead-zinc mining areas in China.In order to study the soil fungal community composition changes responding to different degree of heavy metal pollution,soil samples from the lead-zinc mine field of Yunnan Mengnuo were studied.5 samples from the heavy metal pollution soil (HP) and other 4 from the low pollution (LP),based on the cluster analysis of heavy metal contents and the physical and chemical properties of the sample were analyzed.Genomic DNA of the soil samples were extracted and the Internal Transcribed Spacer (ITS) genes were sequenced by the high-through sequencing Illumina MiSeq.The fungal communities at different taxonomic levels (Phylum,Class,Order,Family,Genus and Species) were compared.In HP samples,the abundance of unclassified fungi were the highest,then followed by Aspergillus,Un--s-Clavulinaceae sp.and Un--s-fungal sp.ARIZ L453 respectively.In LP samples,the unclassify fungi were also high,but less than HP.The relative abundance of fungi from high to low was Geastrum,Aspergillus and Mortierella.The Representational Difference Analysis (RDA) showed that different heavy metals influence fungal community diversity and the concentrations of Pb was significantly correlated with fungal community.
Keywords:lead-zinc mining  heavy metal pollution  high-throughput sequencing  fungal community
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