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基于宏基因组学的分子生态网络揭示活性污泥微生物相互作用 被引量:2

Molecular ecological networks reveal microbial interactions in activated sludge based on metagenomics
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摘要 基于宏基因组物种分类学注释结果,构建了不同形态下活性污泥微生物分子生态网络.结果表明附着生物膜和絮体污泥分子生态网络中模块化数值分别为0.826和0.828;平均聚类系数(avgCC)分别为0.754和0.733;平均路径长度(HD)分别为4.197和4.793;鲁棒性表现分别为0.274和0.297.基于此,该研究得出结论:絮体污泥群落相较附着生物膜群落有更为强烈的相互作用,而附着生物膜相较絮体污泥则有着更为丰富的参与硝化过程的物种(Nitrospira)以及更为“健壮”的生态网络. Based on the annotation results of metagenomic species taxonomy,this study constructed a molecular ecological network of activated sludge microorganisms in different forms.The results showed that the number of modularization values in the molecular ecological network of attached biofilm and floc sludge were 0.826 and 0.828,respectively;the average clustering coefficient(avgCC)was 0.754 and 0.733,respectively;the average path length(HD)was 4.197 and 4.793 respectively;the rod performance is 0.274 and 0.297,respectively.In this study,the floc sludge community has a stronger interaction than the attached biofilm community,and the attached biofilm has a richer species(Nitrospira)involved in nitrifying process and a more“Robust”network than the floc sludge.
作者 邹奎 张鹏 ZOU Kui;ZHANG Peng(College of Environment and Resources, Xiangtan University, Xiangtan 411105, China)
出处 《湘潭大学学报(自然科学版)》 CAS 2021年第6期99-106,共8页 Journal of Xiangtan University(Natural Science Edition)
基金 湖南省教育厅科学研究项目(20B58)。
关键词 活性污泥 生物膜 宏基因组 分子生态网络 activated sludge biofilm metagenomics molecular ecological network
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  • 1白璐,王淑莹,彭永臻,高守有.低溶解氧条件下活性污泥沉降性的研究[J].工业水处理,2006,26(5):54-56. 被引量:30
  • 2李绍秀,彭勃,陈贻龙.城市污水处理厂的污泥臭氧化减量技术[J].净水技术,2006,25(3):50-53. 被引量:5
  • 3Blumel S. , Busse H. J. , Stolz A. , et al. Xenophilus azo- voransgen, nov. , sp. nov. , a soil bacterium able to degrade azo dyes of the Orange II type[J]. Int J Syst Evol Bacteri- oi,2001,51(5) :I 831-1 837.
  • 4Suzuki Y. , Yoda T. , Ruhul A. , et al. Molecular cloning and characterization of the gene coding for azoreductase from Bacillus sp. OYI-2 isolated from soil [J]. J Biol Chem,2001,276(12)..9 059-9 065.
  • 5Bisschops I. , Spanjers H, Literature review on textile wastewater charactreisation [J]. Environ Technol, 2003, 24(11)=1 399-1 411.
  • 6Weisburger J. H. Comments on the history and impor tance of aromatic and heterocyclic amines in public health Eli. Mutat Res,2002,5079-20.
  • 7Saratale R. G. , Saratale G. D. , Kalyani D. C. , eta[. En- hanced decolorization and biodegradation of textile azo dye Scarlet R by using developed microbial consortium GR [J]. Bioresour. Technol. , 2009,100 (9) : 2 493-2 500.
  • 8Saratale R. G. ,Saratale G. D. ,Chang J. S. ,et al. Bactreial decolorizaiton and degradation azo dyes: a review[J]. J. Taiwan Inst. Chem. Eng. ,2011,4(1):138-157.
  • 9Myrna S. , Aida S. , Hermminial I. P. , et al. Microbial de co|ouration of azo dyes: A review[J]. Process Biochemis- try,2012,47(12) :1 723-1 748.
  • 10刘志培,杨惠芳.偶氮染料的微生物降解[J].环境污染与防治,1987(2):2-5.

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