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  4. Species identity, rather than species mixtures, drives cover crop effects on nutrient partitioning in unfertilized agricultural soil
 
research article

Species identity, rather than species mixtures, drives cover crop effects on nutrient partitioning in unfertilized agricultural soil

Freund, Lucas  
•
Mariotte, Pierre  
•
Santonja, Mathieu  
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2021
Plant And Soil

Aims Previous cover crop studies mainly focused on the links between plant uptake and soil fertility, and there is a clear knowledge gap regarding the role of microbes in these processes. Our aim was then to better understand the effects of plant mixtures (versus monoculture) and the specific effects of each plant species on nitrogen (N) and phosphorus (P) partitioning between plant, soil, and more particularly microbial pools. Methods Monocultures and mixtures composed of black oat, field pea and Indian mustard were grown during two months in a greenhouse. The concentrations of carbon (C), N and P were measured in both plant and microbial biomass at final harvest, together with soil available N and P. Results Overall, our findings highlight stronger selection effect (i.e., presence of key species) rather than complementarity effects (i.e., species mixture) to affect the measured parameters. The presence of pea increased the biomass production of oat and mustard, as well as the nutrient concentration of oat, whereas pea P concentration decreased in presence of oat and mustard N and P concentrations were negatively impacted respectively by the presence of oat and pea. We also observed a strong competition between plants and microbes for both soil N and P. Conclusions The oat-pea and the oat-pea-mustard mixtures represented the best compromise between biomass production, nutrient storage and biomass C:N ratio, thus insuring a good organic matter decomposition and nutrient provision for the following main crop.

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Type
research article
DOI
10.1007/s11104-020-04782-z
Web of Science ID

WOS:000599118000001

Author(s)
Freund, Lucas  
Mariotte, Pierre  
Santonja, Mathieu  
Buttler, Alexandre  
Jeangros, Bernard
Date Issued

2021

Published in
Plant And Soil
Volume

460

Start page

149

End page

162

Subjects

Agronomy

•

Plant Sciences

•

Soil Science

•

Agriculture

•

agro-ecosystem

•

green manure

•

nitrogen

•

phosphorus

•

resource-use complementarity

•

species selection

•

soil fertility

•

nitrogen-fixing legumes

•

plant diversity

•

microbial biomass

•

extraction method

•

organic-matter

•

biodiversity

•

rhizosphere

•

productivity

•

water

Note

This is an Open Access article under the terms of the Creative Commons Attribution License

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
PERL  
ECOS  
Available on Infoscience
January 9, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/174559
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