Floodplain soils at the Elbe river, Germany, and their diverse microbial biomass
Two long-term submerged Eutric Gleysols (GLe) and two short-time flooded Eutric Fluvisols (FLe) at the Elbe River (Germany) with high organic carbon contents (C org between 4.9 and 11.6%) were selected to evaluate dehydrogenase activity (DHA), soil microbial carbon (C mic ), C mic /C org ratio, and...
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Published in: | Archiv für Acker- und Pflanzenbau und Bodenkunde Vol. 54; no. 3; pp. 259 - 273 |
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Main Authors: | , |
Format: | Journal Article |
Language: | English |
Published: |
Taylor & Francis
01-06-2008
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Subjects: | |
Online Access: | Get full text |
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Summary: | Two long-term submerged Eutric Gleysols (GLe) and two short-time flooded Eutric Fluvisols (FLe) at the Elbe River (Germany) with high organic carbon contents (C
org
between 4.9 and 11.6%) were selected to evaluate dehydrogenase activity (DHA), soil microbial carbon (C
mic
), C
mic
/C
org
ratio, and phospholipid fatty acids (PLFA) to characterize and discriminate these soils with microbial parameters. DHA, C
mic
and PLFA-biomass as well as C
mic
/C
org
ratios are considerable lower in GLe's than in FLe's what seem to be an unspecific response of aerobic soil microorganisms on the long flooding period and the resulting short time for development after last flooding. C
mic
/C
org
ratios are low in comparison to terrestrial soils. PLFA profiles were dominated by saturated fatty acids (FA). Principal component analyses (PCA) with the identified FAs revealed a clear discrimination among the four floodplain soils. In GLe's, all groups of PLFA, inclusive monounsaturated FA, are lowest and in FLe's highest. Polyunsaturated FA fungi biomarker (18:2ω6,9c) was very low in GLe1 and could not be detected in GLe2. The environmental conditions which microorganisms are exposed seem to be disadvantageous for fungi in these long submerged soils. |
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Bibliography: | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 |
ISSN: | 0365-0340 1476-3567 |
DOI: | 10.1080/03650340701661206 |