Publications

Found 173 results
Author [ Title(Desc)] Type Year
Filters: First Letter Of Last Name is G  [Clear All Filters]
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
T
Prober S.M, Stol J., Piper M., Gupta V, Cunningham S..  2014.  Towards climate-resilient restoration in mesic eucalypt woodlands: characterizing topsoil biophysical condition in different degradation states. Plant and Soil. 383:231-244.
Harris JA, Ritz K, Coucheney E, Grice SM, Lerch TZ, Pawlett M, Herrmann AM.  2012.  The thermodynamic efficiency of soil microbial communities subject to long-term stress is lower than those under conventional input regimes. Soil Biology and Biochemistry. 47:149-157.
Mellado A., Morillas L., Gallardo A., Zamora R..  2016.  Temporal dynamic of parasite-mediated linkages between the forest canopy and soil processes and the microbial community. New Phytologist. 211:1382-1392.
Dacal M, Delgado-Baquerizo M, Barquero J, Berhe AAsefaw, Gallardo A, Maestre FT, García-Palacios P.  2022.  Temperature Increases Soil Respiration Across Ecosystem Types and Soil Development, But Soil Properties Determine the Magnitude of This Effect. Ecosystems. 25:184-198.
Dacal M, Delgado-Baquerizo M, Barquero J, Berhe AAsefaw, Gallardo A, Maestre FT, García-Palacios P.  2022.  Temperature Increases Soil Respiration Across Ecosystem Types and Soil Development, But Soil Properties Determine the Magnitude of This Effect. Ecosystems. 25:184-198.
Gray S.M, Poisot T., Harvey E., Mouquet N., Miller T.E, Gravel D..  2016.  Temperature and trophic structure are driving microbial productivity along a biogeographical gradient. Ecography. 39:981-989.
Gray S.M, Poisot T., Harvey E., Mouquet N., Miller T.E, Gravel D..  2016.  Temperature and trophic structure are driving microbial productivity along a biogeographical gradient. Ecography. 39:981-989.
S
Wang Y., Wilhelm R.C, Swenson T.L, Silver A., Andeer P.F, Golini A., Kosina S.M, Bowen B.P, Buckley D.H, Northen T.R.  2022.  Substrate Utilization and Competitive Interactions Among Soil Bacteria Vary With Life-History Strategies. Frontiers in Microbiology. 13:14.
Lagomarsino A., Knapp B.A, Moscatelli M.C, De Angelis P., Grego S., Insam H..  2007.  Structural and functional diversity of soil microbes is affected by elevated [CO2] and N addition in a poplar plantation. Journal of Soils and Sediments. 7:399-405.
Yuan H.Z, Zhu Z.K, Wei X.M, Liu S.L, Peng P.Q, Gunina A., Shen J.L, Kuzyakov Y., Ge T.D, Wu J.S et al..  2019.  Straw and biochar strongly affect functional diversity of microbial metabolism in paddy soils. Journal of Integrative Agriculture. 18:1474-1485.
Yuan H.Z, Zhu Z.K, Wei X.M, Liu S.L, Peng P.Q, Gunina A., Shen J.L, Kuzyakov Y., Ge T.D, Wu J.S et al..  2019.  Straw and biochar strongly affect functional diversity of microbial metabolism in paddy soils. Journal of Integrative Agriculture. 18:1474-1485.
Raymond-Leonard L.J, Gravel D., Reich P.B, Handa I.T.  2018.  Springtail community structure is influenced by functional traits but not biogeographic origin of leaf litter in soils of novel forest ecosystems. Proceedings of the Royal Society B-Biological Sciences. 285:7.
Guillot E., Bertrand I., Rumpel C., Gomez C., Arnal D., Abadie J., Hinsinger P..  2021.  Spatial heterogeneity of soil quality within a Mediterranean alley cropping agroforestry system: Comparison with a monocropping system. European Journal of Soil Biology. 105:10.
Guillot E., Bertrand I., Rumpel C., Gomez C., Arnal D., Abadie J., Hinsinger P..  2021.  Spatial heterogeneity of soil quality within a Mediterranean alley cropping agroforestry system: Comparison with a monocropping system. European Journal of Soil Biology. 105:10.
Erel R., Bérard A., Capowiez L., Doussan C., Arnal D., Souche G., Gavaland A., Fritz C., Visser E.JW, Salvi S. et al..  2017.  Soil type determines how root and rhizosphere traits relate to phosphorus acquisition in field-grown maize genotypes. Plant and Soil. 412:115-132.
de Varennes A., Qu G., Cordovil C., Goncalves P..  2011.  Soil quality indicators response to application of hydrophilic polymers to a soil from a sulfide mine. Journal of Hazardous Materials. 192:1836-1841.
Bonner M.TL, Herbohn J., Gregorio N., Pasa A., Avela M.S, Solano C., Moreno M.OM, Almendras-Ferraren A., Wills J., Shoo L.P et al..  2019.  Soil organic carbon recovery in tropical tree plantations may depend on restoration of soil microbial composition and function. Geoderma. 353:70-80.
Lagomarsino A., Grego S., Kandeler E..  2012.  Soil organic carbon distribution drives microbial activity and functional diversity in particle and aggregate-size fractions. Pedobiologia. 55:101-110.
Dacal M., Bradford M.A, Plaza C., Maestre F.T, Garcia-Palacios P..  2019.  Soil microbial respiration adapts to ambient temperature in global drylands. Nature Ecology & Evolution. 3:232-+.
Diakhate S., Gueye M., Chevallier T., Diallo N.H, Assigbetse K., Abadie J., Diouf M., Masse D., Sembene M., Ndour Y.B et al..  2016.  Soil microbial functional capacity and diversity in a millet-shrub intercropping system of semi-arid Senegal. Journal of Arid Environments. 129:71-79.