4.4 Article

Functional diversity of soil microbial communities in boreal and temperate Scots pine forests

Related references

Note: Only part of the references are listed.
Article Ecology

Climate change alters ecological strategies of soil bacteria

Sarah E. Evans et al.

ECOLOGY LETTERS (2014)

Article Soil Science

Diversity of microorganisms from forest soils differently polluted with heavy metals

Marcin Chodak et al.

APPLIED SOIL ECOLOGY (2013)

Article Ecology

Nitrogen balance of a boreal Scots pine forest

J. F. J. Korhonen et al.

BIOGEOSCIENCES (2013)

Article Microbiology

Soil characteristics more strongly influence soil bacterial communities than land-use type

Eiko E. Kuramae et al.

FEMS MICROBIOLOGY ECOLOGY (2012)

Article Soil Science

Plant species influence microbial diversity and carbon allocation in the rhizosphere

Natalia Ladygina et al.

SOIL BIOLOGY & BIOCHEMISTRY (2010)

Article Soil Science

Comparison of factors limiting bacterial growth in different soils

Fredrik Demoling et al.

SOIL BIOLOGY & BIOCHEMISTRY (2007)

Article Soil Science

Nutrient limitations to soil microbial biomass and activity in loblolly pine forests

AS Allen et al.

SOIL BIOLOGY & BIOCHEMISTRY (2004)

Review Multidisciplinary Sciences

Ecological linkages between aboveground and belowground biota

DA Wardle et al.

SCIENCE (2004)

Article Soil Science

Biodegradation of low molecular weight organic acids in coniferous forest podzolic soils

PAW van Hees et al.

SOIL BIOLOGY & BIOCHEMISTRY (2002)

Article Biotechnology & Applied Microbiology

Rapid method of determining factors limiting bacterial growth in soil

L Aldén et al.

APPLIED AND ENVIRONMENTAL MICROBIOLOGY (2001)

Article Environmental Sciences

Mycorrhizal weathering:: A true case of mineral plant nutrition?

N van Breemen et al.

BIOGEOCHEMISTRY (2000)