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pH and exchangeable aluminum are major regulators of microbial energy flow and carbon use efficiency in soil microbial communities
Davey L Jones, Emily C. Cooledge, Frances C. Hoyle, Robert I. Griffiths, Daniel V. Murphy (2019). pH and exchangeable aluminum are major regulators of microbial energy flow and carbon use efficiency in soil microbial communities. Soil Biology and Biochemistry, 138, pp. 107584-107584, DOI: 10.1016/j.soilbio.2019.107584.
Article122 days agoREINTEGRATION OF CROP-LIVESTOCK SYSTEMS IN EUROPE: AN OVERVIEW
A.G.T. Schut, Emily C. Cooledge, Marc Moraine, G.W.J. van de Ven, Davey L Jones, David R. Chadwick (2021). REINTEGRATION OF CROP-LIVESTOCK SYSTEMS IN EUROPE: AN OVERVIEW. Frontiers of Agricultural Science and Engineering, 8(1), pp. 111-111, DOI: 10.15302/j-fase-2020373.
Article122 days agoAGRONOMIC AND ENVIRONMENTAL BENEFITS OF REINTRODUCING HERB- AND LEGUME-RICH MULTISPECIES LEYS INTO ARABLE ROTATIONS: A REVIEW
Emily C. Cooledge, David R. Chadwick, Lydia M. J. Smith, Jonathan R. Leake, Davey L Jones (2022). AGRONOMIC AND ENVIRONMENTAL BENEFITS OF REINTRODUCING HERB- AND LEGUME-RICH MULTISPECIES LEYS INTO ARABLE ROTATIONS: A REVIEW. Frontiers of Agricultural Science and Engineering, 0(0), pp. 0-0, DOI: 10.15302/j-fase-2021439.
Article122 days agoSoil pH and phosphorus availability regulate sulphur cycling in an 82-year-old fertilised grassland
Qiqi Wang, Sara L. Bauke, Thomas Döring, Yin Jin-hua, Emily C. Cooledge, Davey L Jones, David R. Chadwick, Albert Tietema, Roland Bol (2024). Soil pH and phosphorus availability regulate sulphur cycling in an 82-year-old fertilised grassland. Soil Biology and Biochemistry, 194, pp. 109436-109436, DOI: 10.1016/j.soilbio.2024.109436.
Article122 days agoPhosphorus fertilization promotes carbon cycling and negatively affects microbial carbon use efficiency in agricultural soils: Laboratory incubation experiments
Antonio Rafael Sánchez‐Rodríguez, María Carmen del Campillo, J. Torrent, Emily C. Cooledge, David R. Chadwick, Davey L Jones (2024). Phosphorus fertilization promotes carbon cycling and negatively affects microbial carbon use efficiency in agricultural soils: Laboratory incubation experiments. Geoderma, 450, pp. 117038-117038, DOI: 10.1016/j.geoderma.2024.117038.
Article122 days ago