Analysis of methane monooxygenase genes in mono lake suggests that increased methane oxidation activity may correlate with a change in methanotroph community structure.

Abstract:

:Mono Lake is an alkaline hypersaline lake that supports high methane oxidation rates. Retrieved pmoA sequences showed a broad diversity of aerobic methane oxidizers including the type I methanotrophs Methylobacter (the dominant genus), Methylomicrobium, and Methylothermus, and the type II methanotroph Methylocystis. Stratification of Mono Lake resulted in variation of aerobic methane oxidation rates with depth. Methanotroph diversity as determined by analysis of pmoA using new denaturing gradient gel electrophoresis primers suggested that variations in methane oxidation activity may correlate with changes in methanotroph community composition.

journal_name

Appl Environ Microbiol

authors

Lin JL,Joye SB,Scholten JC,Schäfer H,McDonald IR,Murrell JC

doi

10.1128/AEM.71.10.6458-6462.2005

keywords:

subject

Has Abstract

pub_date

2005-10-01 00:00:00

pages

6458-62

issue

10

eissn

0099-2240

issn

1098-5336

pii

71/10/6458

journal_volume

71

pub_type

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