Publications

Found 146 results
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Journal Article
Bastida F., Bastidal F., Garcia C., Fierer N., Eldridge D.J, Bowker M.A, Abades S., Alfaro F.D, Berhe A.A, Cutler N.A et al..  2019.  Global ecological predictors of the soil priming effect. Nature Communications. 10:9.
Holatko J., Hammerschmiedt T., Datta R., Baltazar T., Kintl A., Latal O., Pecina V., Sarec P., Novak P., Balakova L. et al..  2020.  Humic Acid Mitigates the Negative Effects of High Rates of Biochar Application on Microbial Activity. Sustainability. 12:19.
Holatko J., Hammerschmiedt T., Datta R., Baltazar T., Kintl A., Latal O., Pecina V., Sarec P., Novak P., Balakova L. et al..  2020.  Humic Acid Mitigates the Negative Effects of High Rates of Biochar Application on Microbial Activity. Sustainability. 12:19.
Macdonald C.A, Crawley M.J, Wright D.J, Kuczynski J., Robinson L., Knight R., W. Al-Soud A, Sorensen S.J, Deng Y., Zhou J.Z et al..  2015.  Identifying qualitative effects of different grazing types on below-ground communities and function in a long-term field experiment. Environmental Microbiology. 17:841-854.
Polli F., Zingaretti D., Crognale S., Pesciaroli L., D'Annibale A., Petruccioli M., Baciocchi R..  2018.  Impact of the Fenton-like treatment on the microbial community of a diesel-contaminated soil. Chemosphere. 191:580-588.
Wahbi S., Prin Y., Thioulouse J., Sanguin H., Baudoin E., Maghraoui T., Oufdou K., Le Roux C., Galiana A., Hafidi M. et al..  2016.  Impact of Wheat/Faba Bean Mixed Cropping or Rotation Systems on Soil Microbial Functionalities. Frontiers in Plant Science. 7:9.
Palomino J., Garcia-Palacios P., De Deyn G.B, Martinez-Garcia L.B, Sanchez-Moreno S., Milla R..  2023.  Impacts of plant domestication on soil microbial and nematode communities during litter decomposition. Plant and Soil. 487:419-436.
Domínguez MT, Gutiérrez E, González-Domínguez B, Román M, vila JMÁ, Ramo C, Gonzalez JM, García LV.  2017.  Impacts of protected colonial birds on soil microbial communities: When protection leads to degradation. Soil Biology and Biochemistry. 105:59-70.
Le Gall S., Bérard A., Page D., Lanoe L., Bertin N., Doussan C..  2021.  Increased exopolysaccharide production and microbial activity affect soil water retention and field performance of tomato under water deficit. Rhizosphere. 19:12.
Ye J.S, Bradford M.A, Dacal M., Maestre F.T, Garca-Palacios P..  2019.  Increasing microbial carbon use efficiency with warming predicts soil heterotrophic respiration globally. Global Change Biology. 25:3354-3364.
Zhang C.J, Delgado-Baquerizo M., Drake J.E, Reich P.B, Tjoelker M.G, Tissue D.T, Wang J.T, He J.Z, Singh B.K.  2018.  Intraspecies variation in a widely distributed tree species regulates the responses of soil microbiome to different temperature regimes. Environmental Microbiology Reports. 10:167-178.
Zhang C.J, Delgado-Baquerizo M., Drake J.E, Reich P.B, Tjoelker M.G, Tissue D.T, Wang J.T, He J.Z, Singh B.K.  2018.  Intraspecies variation in a widely distributed tree species regulates the responses of soil microbiome to different temperature regimes. Environmental Microbiology Reports. 10:167-178.
Delgado-Baquerizo M., Reich P.B, Khachane A.N, Campbell C.D, Thomas N., Freitag T.E, W. Al-Soud A, Sorensen S., Bardgett R.D, Singh B.K.  2017.  It is elemental: soil nutrient stoichiometry drives bacterial diversity. Environmental Microbiology. 19:1176-1188.
Hoeffner K, Beylich A, Chabbi A, Cluzeau D, Dascalu D, Graefe U, Guzmán G, Hallaire V, Hanisch J, Landa BB et al..  2021.  Legacy effects of temporary grassland in annual crop rotation on soil ecosystem services. Science of The Total Environment. 780:146140.
Hoeffner K, Beylich A, Chabbi A, Cluzeau D, Dascalu D, Graefe U, Guzmán G, Hallaire V, Hanisch J, Landa BB et al..  2021.  Legacy effects of temporary grassland in annual crop rotation on soil ecosystem services. Science of The Total Environment. 780:146140.
Azziz G., Frade C., Igual J.M, del Pino A., Lezama F., Valverde A..  2023.  Legume Overseeding and P Fertilization Increases Microbial Activity and Decreases the Relative Abundance of AM Fungi in Pampas Natural Pastures. Microorganisms. 11:14.
Richter A., Huallachain D.O, Doyle E., Clipson N., Van Leeuwen J.P, Heuvelink G.B, Creamer R.E.  2018.  Linking diagnostic features to soil microbial biomass and respiration in agricultural grassland soil: a large-scale study in Ireland. European Journal of Soil Science. 69:414-428.
Wakelin S.A, Condron L.M, Gerard E., Dignam B.EA, Black A., O'Callaghan M..  2017.  Long-term P fertilisation of pasture soil did not increase soil organic matter stocks but increased microbial biomass and activity. Biology and Fertility of Soils. 53:511-521.
Brolsma KM, J. Vonk A, Mommer L, Van Ruijven J, Hoffland E, De Goede RGM.  2017.  Microbial catabolic diversity in and beyond the rhizosphere of plant species and plant genotypes. Pedobiologia. 61:43-49.
Dalmonech D., Lagomarsino A., Moscatelli M.C, Chiti T., Valentini R..  2010.  Microbial performance under increasing nitrogen availability in a Mediterranean forest soil. Soil Biology and Biochemistry. 42:1596-1606.
Delgado-Baquerizo M., Trivedi P., Trivedi C., Eldridge D.J, Reich P.B, Jeffries T.C, Singh B.K.  2017.  Microbial richness and composition independently drive soil multifunctionality. Functional Ecology. 31:2330-2343.
Weng Z., Van Zwieten L., Tavakkoli E., Rose M.T, Singh B.P, Joseph S., Macdonald L.M, Kimber S., Morris S., Rose T.J et al..  2022.  Microspectroscopic visualization of how biochar lifts the soil organic carbon ceiling. Nature Communications. 13:12.
Delgado-Baquerizo M., Reich P.B, Trivedi C., Eldridge D.J, Abades S., Alfaro F.D, Bastida F., Berhe A.A, Cutler N.A, Gallardo A. et al..  2020.  Multiple elements of soil biodiversity drive ecosystem functions across biomes. Nature Ecology & Evolution. 4:210-220.
Grishko V.N, Syshchikova O.V, Zenova G.M, Kozhevin P.A, Dubrova M.S, Lubsanova D.A, Chernov I.Y.  2015.  Mycelial actinobacteria in salt-affected soils of arid territories of Ukraine and Russia. Eurasian Soil Science. 48:72-76.
Durenkamp M., Pawlett M., Ritz K., Harris J.A, Neal A.L, McGrath S.P.  2016.  Nanoparticles within WWTP sludges have minimal impact on leachate quality and soil microbial community structure and function. Environmental Pollution. 211:399-405.