Rapid biological oxidation of methanol in the tropical Atlantic: significance as a microbial carbon source

被引:43
作者
Dixon, J. L. [1 ]
Beale, R. [1 ]
Nightingale, P. D. [1 ]
机构
[1] Plymouth Marine Lab, Plymouth PL1 3DH, Devon, England
关键词
AMINO-ACID-UPTAKE; SUBTROPICAL ATLANTIC; BACTERIAL PRODUCTION; ATMOSPHERIC METHANOL; GROWTH EFFICIENCY; AQUATIC SYSTEMS; ORGANIC-CARBON; NE ATLANTIC; OCEAN; SEA;
D O I
10.5194/bg-8-2707-2011
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Methanol is the second most abundant organic gas in the atmosphere after methane, and is ubiquitous in the troposphere. It plays a significant role in atmospheric oxidant chemistry and is biogeochemically active. Large uncertainties exist about whether the oceans are a source or sink of methanol to the atmosphere. Even less is understood about what reactions in seawater determine its concentration, and hence flux across the sea surface interface. We report here concentrations of methanol between 151-296 nM in parts of the oligotrophic North Atlantic, with corresponding microbial uptake rates between 2-146 nM d(-1), suggesting turnover times as low as 1 day (1-25 days) in surface waters of the oligotrophic tropical North East Atlantic. Methanol is mainly (>= 97%) used by microbes for obtaining energy in oligotrophic regions, which contrasts with shelf and coastal areas where between 20-50% can be used for cell growth. Comparisons of microbial methanol oxidation rates with parallel determinations of bacterial leucine uptake suggest that methanol contributes on average 13% to bacterial carbon demand in the central northern Atlantic gyre (maximum of 54%). In addition, the contribution that methanol makes to bacterial carbon demand varies as a power function of chlorophyll a concentrations; suggesting for concentrations <0.2 mu g l(-1) that methanol can make a significant contribution to bacterial carbon demand. However, our low air to sea methanol flux estimates of 7.2-13 mu mol m(-2) d(-1) suggest that the atmosphere is not a major methanol source. We conclude that there must be a major, as yet unidentified, in situ oceanic methanol source in these latitudes which we suggest is sunlight driven decomposition of organic matter.
引用
收藏
页码:2707 / 2716
页数:10
相关论文
共 55 条
  • [1] Food-web structure and elemental (C, N and P) fluxes in the eastern tropical North Atlantic
    Agusti, S
    Duarte, CM
    Vaqué, D
    Hein, M
    Gasol, JM
    Vidal, M
    [J]. DEEP-SEA RESEARCH PART II-TOPICAL STUDIES IN OCEANOGRAPHY, 2001, 48 (10) : 2295 - 2321
  • [2] Large-scale variability in surface bacterial carbon demand and growth efficiency in the subtropical northeast Atlantic Ocean
    Alonso-Saez, Laura
    Gasol, Josep M.
    Aristegui, Javier
    Vilas, Juan C.
    Vaque, Dolors
    Duarte, Carlos M.
    Agusti, Susana
    [J]. LIMNOLOGY AND OCEANOGRAPHY, 2007, 52 (02) : 533 - 546
  • [3] [Anonymous], 2008, Microbial Ecology of the Oceans, DOI DOI 10.1002/9780470281840.CH9
  • [4] Short-term variability of heterotrophic bacterioplankton during upwelling off the NW Iberian margin
    Barbosa, AB
    Galvao, HM
    Mendes, PA
    Alvarez-Salgado, XA
    Figueiras, FG
    Joint, I
    [J]. PROGRESS IN OCEANOGRAPHY, 2001, 51 (2-4) : 339 - 359
  • [5] Beale R., 2011, ANAL CHIM A IN PRESS
  • [6] Empirical Leucine-to-Carbon Conversion Factors for Estimating Heterotrophic Bacterial Production: Seasonality and Predictability in a Temperate Coastal Ecosystem
    Calvo-Diaz, Alejandra
    Moran, Xose Anxelu G.
    [J]. APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2009, 75 (10) : 3216 - 3221
  • [7] Uptake of methanol to the North Atlantic Ocean surface
    Carpenter, LJ
    Lewis, AC
    Hopkins, JR
    Read, KA
    Longley, ID
    Gallagher, MW
    [J]. GLOBAL BIOGEOCHEMICAL CYCLES, 2004, 18 (04) : 1 - 8
  • [8] Modularity of methylotrophy, revisited
    Chistoserdova, Ludmila
    [J]. ENVIRONMENTAL MICROBIOLOGY, 2011, 13 (10) : 2603 - 2622
  • [9] High atmosphere-ocean exchange of organic carbon in the NE subtropical Atlantic -: art. no. L21807
    Dachs, J
    Calleja, ML
    Duarte, CM
    del Vento, S
    Turpin, B
    Polidori, A
    Herndl, GJ
    Agustí, S
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2005, 32 (21) : 1 - 4
  • [10] Bacterial growth efficiency in natural aquatic systems
    del Giorgio, PA
    Cole, JJ
    [J]. ANNUAL REVIEW OF ECOLOGY AND SYSTEMATICS, 1998, 29 : 503 - 541