The complicated substrates enhance the microbial diversity and zinc leaching efficiency in sphalerite bioleaching system

Appl Microbiol Biotechnol. 2015 Dec;99(23):10311-22. doi: 10.1007/s00253-015-6881-x. Epub 2015 Aug 13.

Abstract

This study used an artificial enrichment microbial consortium to examine the effects of different substrate conditions on microbial diversity, composition, and function (e.g., zinc leaching efficiency) through adding pyrite (SP group), chalcopyrite (SC group), or both (SPC group) in sphalerite bioleaching systems. 16S rRNA gene sequencing analysis showed that microbial community structures and compositions dramatically changed with additions of pyrite or chalcopyrite during the sphalerite bioleaching process. Shannon diversity index showed a significantly increase in the SP (1.460), SC (1.476), and SPC (1.341) groups compared with control (sphalerite group, 0.624) on day 30, meanwhile, zinc leaching efficiencies were enhanced by about 13.4, 2.9, and 13.2%, respectively. Also, additions of pyrite or chalcopyrite could increase electric potential (ORP) and the concentrations of Fe3+ and H+, which were the main factors shaping microbial community structures by Mantel test analysis. Linear regression analysis showed that ORP, Fe3+ concentration, and pH were significantly correlated to zinc leaching efficiency and microbial diversity. In addition, we found that leaching efficiency showed a positive and significant relationship with microbial diversity. In conclusion, our results showed that the complicated substrates could significantly enhance microbial diversity and activity of function.

Keywords: 16S rRNA gene sequencing; Artificial enrichment microbial consortium; Linear regression analysis; Shannon diversity index; Sphalerite bioleaching.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Biotransformation
  • Chemical Phenomena
  • Cluster Analysis
  • Copper / metabolism
  • DNA, Ribosomal / chemistry
  • DNA, Ribosomal / genetics
  • Environmental Microbiology
  • Hydrogen-Ion Concentration
  • Iron / analysis
  • Iron / metabolism
  • Microbial Consortia*
  • Molecular Sequence Data
  • Phylogeny
  • RNA, Ribosomal, 16S / genetics
  • Sequence Analysis, DNA
  • Sulfides / metabolism*
  • Zinc / metabolism*
  • Zinc Compounds / metabolism*

Substances

  • DNA, Ribosomal
  • RNA, Ribosomal, 16S
  • Sulfides
  • Zinc Compounds
  • chalcopyrite
  • pyrite
  • Copper
  • Iron
  • Zinc
  • zinc sulfide