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Studying the functional heterogeneity of soil microorganisms at different spatial scales and linking it to soil carbon mineralization is crucial for predicting the response of soil carbon stability to environmental changes and human disturbance. Here, a total of 429 soil samples were collected from typical paddy fields in China, and the bacterial and fungal communities as well as functional genes...
Aim
The β‐diversity of plants and animals generally decreases with increasing latitudes. Here, we tested whether this relationship also holds for soil microbes at both functional and taxonomic levels.
Location
China.
Time period
Between June and October 2013.
Major taxa studied
Soil archaea, bacteria, and functional genes.
Methods
We used a spatially explicit ‘L‐shaped’ sampling strategy...
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