HR: 1340h
AN: B33A-0848 [Abstracts]
TI: Dinitrogen Gas Production From Epi- and Endolithic Basalt Communities at Loihi Seamount: A New Challenge for the Marine Nitrogen Budget
AU: * Horn, G
EM: ghorn@usc.edu
AF: University of Southern California, Department of Biological Sciences, Marine and
Environmental Biology Section, Geomicrobiology Group, 3616 Trousdale Parkway, AHF 107, Los Angeles, CA
90089, United States
AU: Kroeger, K D
EM: kkroeger@usgs.gov
AF: USGS, Woods Hole Science Center, 384 Woods Hole Road, Woods Hole, MA 02543,
United States
AU: Kartal, B
EM: kartal@science.ru.nl
AF: Radboud University Nijmegen, IWWR, Microbiology, Toernooiveld 1, Nijmegen, NL-6525 ED, Netherlands
AU: Jetten, M S
EM: m.jetten@science.ru.nl
AF: Radboud University Nijmegen, IWWR, Microbiology, Toernooiveld 1, Nijmegen, NL-6525 ED, Netherlands
AU: Edwards, K J
EM: kje@usc.edu
AF: University of Southern California, Department of Biological Sciences, Marine and
Environmental Biology Section, Geomicrobiology Group, 3616 Trousdale Parkway, AHF 107, Los Angeles, CA
90089, United States
AB:
Current knowledge of the nitrogen cycle in the oceans indicates a net loss of biologically available nitrogen from
the oceans. One marine habitat that is conspicuously absent from current nitrogen budget estimations is
seafloor-exposed lavas, such as occur at young ridge flanks around mid-ocean ridge systems and seamounts.
Basalt from two locations on Loihi Seamount, an actively venting volcano southeast of the island of Hawai'i, were
incubated shipboard with 15N labelled nitrate and ammonium additions to determine the rate of nitrogen loss
mediated by epi- and endolithic microbial communities. In all incubations a net production of dinitrogen gas
occurred with concurrent consumption of oxidized nitrogen species (nitrate plus nitrite) and ammonium. The
availability of reduced iron and manganese from the basalts could serve as potential electron donors for
microbial metabolisms, including denitrification and anaerobic ammonia oxidizing (anammox) bacteria. The
presence of 16S rRNA gene sequences that align with the anammox clade of Planctomycetes and ongoing
anammox enrichment cultures inoculated with Loihi basalt suggest a role for anammox bacteria as well. This
initial study indicates an active and significant role for basalt associated microbial communities in the nitrogen
budget of the oceans.
DE: 0448 Geomicrobiology
DE: 0469 Nitrogen cycling
SC: Biogeosciences [B]
MN: 2007 Fall Meeting