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连云港海底底泥及青海湖底泥细菌多样性研究 被引量:27

Bacterial Diversity in Lianyungang Marine Sediment and Qinghai Lake Sediment
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摘要 通过对不同盐环境连云港海底底泥和青海湖底泥样品构建细菌16S rRNA克隆文库,对2个环境样品中细菌群落的多样性、丰富度和优势度等进行了比较,并对其群落组成结构进行了分析.结果表明,连云港海底底泥文库的多样性指数Shannon diversity(H)达到3.53,青海湖底泥文库的Shannon diversity(H)达到3.05,这2个样品的细菌群落均具有很高的多样性.连云港海底底泥中细菌序列主要类群为:变形菌门(Proteobacteria,49.2%),拟杆菌门(Bacteroidetes,29.2%);而青海湖底泥中细菌序列主要类群为:拟杆菌门(Bacteroidetes,60.0%),厚壁菌门(Firmicutes,26.0%).这些细菌中存在一些耐盐和嗜盐菌,对工业生产和高盐废水处理具有重要参考意义. The 16S rRNA clone libraries of two different saline environments the Lianyungang marine sediment and the Qinghai Lake sediment were constructed.The Shannon diversity index,Chao and ACE richness index and Simpson dominance index of the bacterial communities in the two samples was compared,and the analysis for the bacterial community structures of this two samples was conducted.The results showed that the Shannon diversity index of Lianyungang marine sediment achieved 3.53,and that of Qinghai Lake sediment achieved 3.05,it was concluded that the bacterial communities in the two samples were diverse.The main bacterial communities in Lianyungang marine sediment included Proteobacteria(49.2%)and Bacteroidetes(29.2%),and Bacteroidetes(60.0%)and Firmicutes(26.0%)were the main bacterial communities in Qinghai Lake sediment.Some halotolerant and halophilic bacteria were found,which were important for industrial production and high saline wastewater treatment.
出处 《环境科学》 EI CAS CSCD 北大核心 2011年第9期2681-2688,共8页 Environmental Science
基金 科技部国际科技合作项目(2006DFA91870) 高等学校博士学科点专项科研基金项目(20090095120018)
关键词 盐环境 16SrRNA克隆文库 细菌多样性 耐盐嗜盐菌 saline environment 16S rRNA clone library bacterial diversity halotolerant and halophilic bacteria
作者简介 侯梅锋(1985-),女,硕士研究生,主要研究方向为高盐微生物,E-mail:hou.meifeng@163.com 通讯联系人。E-mail:hslongcrees@163.com
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参考文献28

  • 1Liu X B, Yao T D, Kang S C, et al. Bacterial community of the largest oligosaline Lake, Namco on the Tibetan Plateau [ J ]. Geomicrobiology Journal, 2010, 27 ( 8 ) : 669- 682.
  • 2Niederberger T D, Perreault N N, Tille S, et al. Microbial characterization of a subzero, hypersaline methane seep in the Canadian High Arctic [ J ]. International Society for Microbial Ecology, 2010, 4 (10) : 1326-1339.
  • 3Surakasi V P, Antony C P, Sharma S, et al. Temporal bacterial diversity and detection of putative methanotrophs in surface mats of Lonar crater lake[ J]. Journal of Basic Microbiology, 2010, 50 (5) :465-474.
  • 4Jiang H C, Dong H L, Zhan G X, et al. Microbial diversity in water and sediment of Lake Chaka, an Athalassohaline Lake in northwestern China [ J ], Applied and Environmental Microbiology, 2006, 72 (6) : 3832-3845.
  • 5赵百锁,杨礼富,宋蕾,王慧.中度嗜盐菌在生物技术中的应用[J].微生物学通报,2007,34(2):359-362. 被引量:45
  • 6任培根,周培瑾.中度嗜盐菌的研究进展[J].微生物学报,2003,43(3):427-431. 被引量:93
  • 7Ahschul S F, Madden T L, Schaffer A A, et al. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs [ J]. Nucleic Acids Research, 1997, 25 ( 17 ) : 3389- 3402.
  • 8Cole J R, Chai B, Farris R J, et al. The ribosomal database project (RDP-II):Introducing my RDP space and quality controlled public data [ J]. Nucleic Acids Research, 2006, 35 (1): 169-172.
  • 9Thomas A H. BioEdit: a user-friendly biological sequence alignment editor and analysis program for Windows 95/98/NT [J]. Nucleic Acids Symposium Series, 1999, 41(1) : 95-98.
  • 10Thompson J D, Gibson T J, Plewniak F, et al. The Clustal-X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools [ J 1. Nucleic Acids Research, 1997, 25(24) :4876-4882.

二级参考文献75

  • 1吴生才.盐田藻垫的分布和生长规律及其意义[J].江苏师范大学学报(自然科学版),1995,25(1):55-58. 被引量:3
  • 2华栋,刘志礼.江苏台南盐场的藻类植物[J].南京大学学报(自然科学版),1993,29(1):77-85. 被引量:6
  • 3谢华,薛燕芬,赵爱民,李铁钢,马延和,曾艳.太平洋帕里西维拉海盆细菌多样性的非培养的初步分析[J].微生物学报,2005,45(1):1-5. 被引量:12
  • 4吴生才,刘志礼.盐田藻垫和多糖的防渗作用研究[J].南京大学学报(自然科学版),1995,31(1):84-89. 被引量:4
  • 5陈长平,高亚辉,林鹏.盐度和pH对底栖硅藻胞外多聚物的影响[J].海洋学报,2006,28(5):123-129. 被引量:25
  • 6[2]Liu Z L,Li P F,Liu X X.Culturing artificial algal mats to improve the salt yield and quality in saltworks[J].Ecol Eng,2002,18:379-383.
  • 7[5]Chiovitti,A.,Molino,P.,Crawford,S.,Teng,R.The glucans extracted with warm water from diatoms are mainly derived from intracellular chrysolaminaran and not extracellular polysaccharides[J].Eur J Phycol,2004,39:117-128.
  • 8[6]De Brouwer,J.F.C.,Stal,L.J.Does warm-water extraction of benthic diatoms yield extracellular polymeric substances or does it extract intracellular chrysolaminaran[J].Eur J Phycol,2004,39:129-131.
  • 9[7]De Brouwer,J.F.C.,Cooksey,K.E.,Staal,M.J.Time of Flight-Secondary Ion Mass Spectrometry on isolated extracellular fractions and intact biofilms of three species of benthic diatoms[J].J Microbiol Meth,2006,65:562-572.
  • 10[8]Greenland,D.J.,Lindstrom,B.G.,Quirk,J.P.Role of polysaccha-rides in stabilization of natural soil aggregates[J].Nature,1961,191:1283-1284.

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