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Assessing bacterial and fungal community structure in soil using ribosomal RNA and other structural gene markersImpact of elevated carbon dioxide on the rhizosphere communities of Carex arenaria and Festuca rubraEffects of global warming on Antarctic soil microorganisms and associated functionsFunctional microarray analysis of nitrogen and carbon cycling genes across an Antarctic latitudinal transectA PCR-denaturing gradient gel electrophoresis (DGGE) approach to assess Fusarium diversity in asparagusPatterns of bacterial diversity across a range of Antarctic terrestrial habitatsBiodiversity and biogeography of Fusarium species from northeastern North American asparagus fields based on microbiological and molecular approachesCommunity patterns of soil bacteria and nematodes in relation to geographic distancePatterns of Fusarium community structure and abundance in relation to spatial, abiotic and biotic factors in soilSoil characteristics more strongly influence soil bacterial communities than land-use typeChanges in Fusarium and arbuscular-mycorrhizal fungi communities as related with different asparagus cultural factorsInfluences of space, soil, nematodes and plants on microbial community composition of chalk grassland soilsPlastic mulch film residues in agriculture: impact on soil suppressiveness, plant growth and microbial communitiesResponses of Antarctic soil microbial communities and associated functions to temperature and freeze-thaw cycle frequencyAtmospheric methane oxidizers are present and active in Canadian high Arctic soilsMicrobial secondary succession in a chronosequence of chalk grasslandsShifts in soil microorganisms in response to warming are consistent across a range of Antarctic environmentsSize and structure of bacterial, fungal and nematode communities along an Antarctic environmental gradientEnvironmental microarray analyses of Antarctic soil microbial communitiesRelationships between Fusarium population structure, soil nutrient status and disease incidence in field-grown asparagusTemperature adaptation of soil bacterial communities along an Antarctic climate gradient: predicting responses to climate warming
author
education
type
label
E. Yergeau
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lastName
name
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staffOrganisationAssociations
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Public - No restriction
@en
Publiek - Geen beperking
@nl
relatedLink
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MSc
@en