Response of Soil Properties and Microbial Communities to Agriculture: Implications for Primary Productivity and Soil Health Indicators

Реакция свойств почвы и микробных сообществ на сельскохозяйственное воздействие: значение для первичной продуктивности и индикаторов здоровья почвы
Brajesh K. Singh, Manuel Delgado‐Baquerizo, Pankaj Trivedi, Ian C. Anderson
2016-07-11

agricultural intensificationprimary productivitysoil health indicatorssoil metagenomicssoil microbial communities
Agricultural intensification is placing tremendous pressure on the soil's capacity to maintain its functions leading to large-scale ecosystem degradation and loss of productivity in the long term. Therefore, there is an urgent need to find early indicators of soil health degradation in response to agricultural management. In recent years, major advances in soil meta-genomic and spatial studies on microbial communities and community-level molecular characteristics can now be exploited as 'biomarker' indicators of ecosystem processes for monitoring and managing sustainable soil health under global change. However, a continental scale, cross biome approach assessing soil microbial communities and their functional potential to identify the unifying principles governing the susceptibility of soil biodiversity to land conversion is lacking. We conducted a meta-analysis from a dataset generated from 102 peer-reviewed publications as well as unpublished data to explore how properties directly linked to soil nutritional health (total C and N; C:N ratio), primary productivity (NPP) and microbial diversity and composition (relative abundance of major bacterial phyla determined by next generation sequencing techniques) are affected in response to agricultural management across the main biomes of Earth (arid, continental, temperate and tropical). In our analysis, we found strong statistical trends in the relative abundance of several bacterial phyla in agricultural (e.g., Actinobacteria and Chloroflexi) and natural (Acidobacteria, Proteobacteria, and Cyanobacteria) systems across all regions and these trends correlated well with many soil properties. However, main effects of agriculture on soil properties and productivity were biome-dependent. Our meta-analysis provides evidence on the predictable nature of the microbial community responses to vegetation type. This knowledge can be exploited in future for developing a new set of indicators for primary productivity and soil health.
1
Agricultural and natural systems showed consistent shifts in major bacterial phyla, including increased representation of Actinobacteria and Chloroflexi in agriculture and Acidobacteria, Proteobacteria, and Cyanobacteria in natural systems.
2
Agriculture’s effects on soil properties and net primary productivity were biome-dependent rather than uniform across ecosystems.
3
Bacterial phylum abundance patterns correlated strongly with soil nutritional properties, including total carbon, total nitrogen, and C:N ratio.
4
Predictable microbial community responses to vegetation type could support development of early indicators for primary productivity and soil health degradation.
5
The meta-analysis integrated data from 102 peer-reviewed publications and unpublished studies across arid, continental, temperate, and tropical biomes.

Soil properties and microbial communities across agricultural and natural systems in the main biomes of Earth

The biome-dependent responses of soil nutritional health, primary productivity, and microbial diversity and composition to agricultural management

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2016-07-11
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Brajesh K. Singh
Manuel Delgado‐Baquerizo
Pankaj Trivedi
Ian C. Anderson
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