ANAEROBIC DEGRADATION OF 1,2-PROPANEDIOL BY A NEW DESULFOVIBRIO STRAIN AND D-ALCOHOLOVORANS

被引:20
|
作者
OUATTARA, AS
CUZIN, N
TRAORE, AS
GARCIA, JL
机构
[1] UNIV AIX MARSEILLE 1,ORSTOM,MICROBIOL LAB,3 PL VICTOR HUGO,F-13331 MARSEILLE 3,FRANCE
[2] UNIV OUAGADOUGOU,FAC SCI,DEPT BIOCHIM,OUAGADOUGOU,BURKINA FASO
关键词
SULFATE REDUCTION; DESULFOVIBRIO; 1,2-PROPANEDIOL DEGRADATION; ALCOHOL AND ALDEHYDE DEHYDROGENASE; NADH DEHYDROGENASE;
D O I
10.1007/BF00290818
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
A sulfate-reducing bacterium, strain HDv, was isolated from the anoxic soil of a ricefield using lactate as electron donor. Cells were gram-negative, motile, nonsporulating curved rods, with single polar flagella. Substrates were incompletely oxidized to acetate and included glycerol, 1,2- and 1,3-propanediol. Sulfate, sulfite, thiosulfate, elemental sulfur, fumarate, maleate, and malate were utilized as electron acceptors. Pyruvate, fumarate, maleate, malate and dihydroxyacetone were fermented. Desulfoviridin and c-type cytochromes were present. The DNA base composition was 66.6 +/- 0.3 mol% G + C. The isolate was identified as a Desulfovibrio sp.; its metabolic properties were somewhat different from those of previously described Desulfovibrio species. Comparative biochemical study of 1,2-propanediol dissimilation by the new isolate and Desulfovibrio alcoholovorans showed that NAD-dependent dehydrogenases play a key role in the catabolism of this substrate. The hypothetical pathways of 1,2-propanediol degradation by Desulfovibrio spp. are presented.
引用
收藏
页码:218 / 225
页数:8
相关论文
共 50 条
  • [1] Anaerobic Degradation of Glycerol by Desulfovibrio fructosovorans and D. carbinolicus and Evidence for Glycerol-Dependent Utilization of 1,2-Propanediol
    Abdel I. Qatibi
    Rhizlane Bennisse
    Moha Jana
    Jean-Louis Garcia
    Current Microbiology, 1998, 36 : 283 - 290
  • [2] Anaerobic degradation of glycerol by Desulfovibrio fructosovorans and D-carbinolicus and evidence for glycerol-dependent utilization of 1,2-propanediol
    Qatibi, AI
    Bennisse, R
    Jana, M
    Garcia, JL
    CURRENT MICROBIOLOGY, 1998, 36 (05) : 283 - 290
  • [3] DESULFOVIBRIO-ALCOHOLOVORANS SP-NOV, A SULFATE-REDUCING BACTERIUM ABLE TO GROW ON GLYCEROL, 1,2-PROPANEDIOL AND 1,3-PROPANEDIOL
    QATIBI, AI
    NIVIERE, V
    GARCIA, JL
    ARCHIVES OF MICROBIOLOGY, 1991, 155 (02) : 143 - 148
  • [4] THE METABOLISM OF 1,2-PROPANEDIOL
    RUDNEY, H
    ARCHIVES OF BIOCHEMISTRY, 1950, 29 (01): : 231 - 232
  • [5] METABOLISM OF 1,2-PROPANEDIOL
    HUFF, E
    BIOCHIMICA ET BIOPHYSICA ACTA, 1961, 48 (03) : 506 - &
  • [6] New Trends and Perspectives in Production of 1,2-Propanediol
    Glowka, Marek
    Krawczyk, Tomasz
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2023, 11 (19) : 7274 - 7287
  • [7] Microwave spectrum of 1,2-propanediol
    Lovas, F. J.
    Plusquellic, D. F.
    Pate, Brooks H.
    Neill, Justin L.
    Muckle, Matthew T.
    Remijan, Anthony J.
    JOURNAL OF MOLECULAR SPECTROSCOPY, 2009, 257 (01) : 82 - 93
  • [8] Determination of 1,2-propanediol in silage
    Bareth, A
    Strohmar, W
    Kitzelmann, E
    JOURNAL OF SEPARATION SCIENCE, 2002, 25 (03): : 183 - 185
  • [9] Characterization of the 1,2-propanediol plus benzene and 1,2-propanediol + benzene-d6 liquid-liquid phase equilibria
    Riley, Kayla
    Tibbetts, Clara
    McKibben, Makayla
    Williamson, Chuck
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 254
  • [10] Development of a Saccharomyces cerevisiae strain for the production of 1,2-propanediol by gene manipulation
    Jeon, Eunyoung
    Lee, Soojin
    Kim, Donghyun
    Yoon, Hyunsik
    Oh, Minkyu
    Park, Chulhwan
    Lee, Jinwon
    ENZYME AND MICROBIAL TECHNOLOGY, 2009, 45 (01) : 42 - 47