Literature DB >> 10441709

Structure of the Microbial Communities in Coniferous Forest Soils in Relation to Site Fertility and Stand Development Stage.

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Abstract

> Abstract The structure, biomass, and activity of the microbial community in the humus layer of boreal coniferous forest stands of different fertility were studied. The Scots pine dominated CT (Calluna vulgaris type) represented the lowest fertility, while VT (Vaccinium vitis-idaéa type), MT (Vaccinium myrtillus type), and OMT (Oxalis acetocella-Vaccinium myrtillus type) following this order, were more fertile types. The microbial community was studied more closely by sampling a succession gradient (from a treeless area to a 180-years-old Norway spruce stand) at the MT type site. The phospholipid fatty acid (PLFA) analysis revealed a gradual shift in the structure of the microbial community along the fertility gradient even though the total microbial biomass and respiration rate remained unchanged. The relative abundance of fungi decreased and that of bacteria increased with increasing fertility. The structure of the bacterial community also changed along the fertility gradient. Irrespective of a decrease in fungal biomass and change in bacterial community structure after clear-cutting, the PLFA analysis did not show strong differences in the microbial communities in the stands of different age growing on the MT type site. The spatial variation in the structure of the microbial community was studied at a MT type site. Semivariograms indicated that the bacterial biomass, the ratio between the fungal and bacterial biomasses, and the relative amount of PLFA 16:1omega5 were spatially autocorrelated within distances around 3 to 4 m. The total microbial and fungal biomasses were autocorrelated only up to 1 m. The spatial distribution of the humus microbial community was correlated mainly with the location of the trees, and consequently, with the forest floor vegetation.http://link.springer-ny.com/link/service/journals/00248/bibs/38n2p168.html

Entities:  

Year:  1999        PMID: 10441709     DOI: 10.1007/s002489900161

Source DB:  PubMed          Journal:  Microb Ecol        ISSN: 0095-3628            Impact factor:   4.552


  29 in total

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Authors:  Pedro A Dimitriu; Susan J Grayston
Journal:  Microb Ecol       Date:  2009-10-15       Impact factor: 4.552

8.  Soil microbial community successional patterns during forest ecosystem restoration.

Authors:  Natasha C Banning; Deirdre B Gleeson; Andrew H Grigg; Carl D Grant; Gary L Andersen; Eoin L Brodie; D V Murphy
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9.  Humboldt's spa: microbial diversity is controlled by temperature in geothermal environments.

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10.  Characterization of humus microbial communities in adjacent forest types that differ in nitrogen availability.

Authors:  S E Leckie; C E Prescott; S J Grayston; J D Neufeld; W W Mohn
Journal:  Microb Ecol       Date:  2004-04-19       Impact factor: 4.552

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