Reduction of molybdate by sulfate-reducing bacteria

被引:0
|
作者
Keka C. Biswas
Nicole A. Woodards
Huifang Xu
Larry L. Barton
机构
[1] Wesley College,Department of Science
[2] University of New Mexico,Department of Biology, Laboratory of Microbial Chemistry
[3] University of Wisconsin,Department of Geology and Geophysics
来源
BioMetals | 2009年 / 22卷
关键词
Molybdate; Molybdenum disulfide; Transition metals; Dissimilatory metal reduction; Sulfate-reducing bacteria;
D O I
暂无
中图分类号
学科分类号
摘要
Molybdate is an essential trace element required by biological systems including the anaerobic sulfate-reducing bacteria (SRB); however, detrimental consequences may occur if molybdate is present in high concentrations in the environment. While molybdate is a structural analog of sulfate and inhibits sulfate respiration of SRB, little information is available concerning the effect of molybdate on pure cultures. We followed the growth of Desulfovibrio gigas ATCC 19364, Desulfovibrio vulgaris Hildenborough, Desulfovibrio desulfuricans DSM 642, and D. desulfuricans DSM 27774 in media containing sub-lethal levels of molybdate and observed a red-brown color in the culture fluid. Spectral analysis of the culture fluid revealed absorption peaks at 467, 395 and 314 nm and this color is proposed to be a molybdate–sulfide complex. Reduction of molybdate with the formation of molybdate disulfide occurs in the periplasm D. gigas and D. desulfuricans DSM 642. From these results we suggest that the occurrence of poorly crystalline Mo-sulfides in black shale may be a result from SRB reduction and selective enrichment of Mo in paleo-seawater.
引用
收藏
页码:131 / 139
页数:8
相关论文
共 50 条
  • [11] Influence of sulfate-reducing bacteria, sulfide and molybdate on hydrogen photoproduction by purple nonsulfur bacteria
    Laurinavichene, Tatyana V.
    Laurinavichius, Kestutis S.
    Belokopytov, Boris F.
    Laurinavichyute, Daniela K.
    Tsygankov, Anatoly A.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2013, 38 (14) : 5545 - 5554
  • [12] Chromate reduction by immobilized palladized sulfate-reducing bacteria
    Humphries, AC
    Mikheenko, IP
    Macaskie, LE
    BIOTECHNOLOGY AND BIOENGINEERING, 2006, 94 (01) : 81 - 90
  • [13] ENZYMATIC IRON AND URANIUM REDUCTION BY SULFATE-REDUCING BACTERIA
    LOVLEY, DR
    RODEN, EE
    PHILLIPS, EJP
    WOODWARD, JC
    MARINE GEOLOGY, 1993, 113 (1-2) : 41 - 53
  • [14] REDUCTION OF FE(III) IN SEDIMENTS BY SULFATE-REDUCING BACTERIA
    COLEMAN, ML
    HEDRICK, DB
    LOVLEY, DR
    WHITE, DC
    PYE, K
    NATURE, 1993, 361 (6411) : 436 - 438
  • [15] EFFECT OF GLUTARALDEHYDE ON SULFIDE PRODUCTION AND SULFATE REDUCTION BY SULFATE-REDUCING BACTERIA
    VATSALA, TM
    MAH, RA
    CURRENT SCIENCE, 1995, 68 (11): : 1131 - 1133
  • [16] Contributions of fermentative acidogenic bacteria and sulfate-reducing bacteria to lactate degradation and sulfate reduction
    Zhao, Yangguo
    Ren, Nanqi
    Wang, Aijie
    CHEMOSPHERE, 2008, 72 (02) : 233 - 242
  • [17] PHYSIOLOGY OF SULFATE-REDUCING BACTERIA
    HANSEN, TA
    MICROBIOLOGICAL SCIENCES, 1988, 5 (03): : 81 - 84
  • [18] Phylogeny of sulfate-reducing bacteria
    Castro, HF
    Williams, NH
    Ogram, A
    FEMS MICROBIOLOGY ECOLOGY, 2000, 31 (01) : 1 - 9
  • [19] BIOCHEMICAL STUDIES ON SULFATE-REDUCING BACTERIA .4. THE CYTOCHROME SYSTEM OF SULFATE-REDUCING BACTERIA
    ISHIMOTO, M
    KOYAMA, J
    NAGAI, Y
    JOURNAL OF BIOCHEMISTRY, 1954, 41 (06): : 763 - 770
  • [20] SYSTEMATICS OF SULFATE-REDUCING BACTERIA
    BATTERSBY, NS
    JOURNAL OF APPLIED BACTERIOLOGY, 1983, 55 (03): : R2 - R2