Publications

Found 484 results
Author [ Title(Asc)] Type Year
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 
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Yang W.H, Zhang T.X, Lin S., Ni W.Z.  2017.  Distance-dependent varieties of microbial community structure and metabolic functions in the rhizosphere of Sedum alfredii Hance during phytoextraction of a cadmium-contaminated soil. Environmental Science and Pollution Research. 24:14234-14248.
Garcia-Palacios P., Prieto I., Ourcival J.M, Hattenschwiler S..  2016.  Disentangling the Litter Quality and Soil Microbial Contribution to Leaf and Fine Root Litter Decomposition Responses to Reduced Rainfall. Ecosystems. 19:490-503.
Li H., Li R.H, Rossi F., Li D.H, De Philippis R., Hu C.X, Liu Y.D.  2016.  Differentiation of microbial activity and functional diversity between various biocrust elements in a heterogeneous crustal community. CatenaC. 147:138-145.
Lindtner P., Gomoryova E., Gomory D., Stasiov S., Kubovcik V..  2019.  Development of physico-chemical and biological soil properties on the European ground squirrel mounds. Geoderma. 339:85-93.
Shand CA, Williams BL, Coutts G.  2008.  Determination of N-species in soil extracts using microplate techniques. Talanta. 74:648-654.
McKinnon A.C, Glare T.R, Ridgway H.J, Mendoza-Mendoza A., Holyoake A., Godsoe W.K, Bufford J.L.  2018.  Detection of the Entomopathogenic Fungus Beauveria bassiana in the Rhizosphere of Wound-Stressed Zea mays Plants. Frontiers in Microbiology. 9:16.
Bougnom B.P, Knapp B.A, Elhottová D., Koubová A., Etoa F.X, Insam H..  2010.  Designer compost with biomass ashes for ameliorating acid tropical soils: Effects on the soil microbiota. Applied Soil Ecology. 45:319-324.
Torrents A., Mas J., Muñoz F.X, del Campo F.J.  2012.  Design of a microfluidic respirometer for semi-continuous amperometric short time biochemical oxygen demand (BODst) analysis. Biochemical Engineering Journal. 66:27-37.
Gazdag O., Kovacs R., Paradi I., Fuzy A., Kodobocz L., Mucsi M., Szili-Kovacs T., Inubushi K., Takacs T..  2019.  Density and Diversity of Microbial Symbionts under Organic and Conventional Agricultural Management. Microbes and Environments. 34:234-243.
Mucsi M., Krett G., Szili-Kovacs T., Moga J., Borsodi A.K.  2021.  Denaturing gradient gel electrophoresis and multi-SIR profiles of soil microbial communities from a karst doline at Aggtelek National Park, Hungary. Folia Microbiologica. 66:107-114.
Evans R., Alessi A.M, Bird S., McQueen-Mason S.J, Bruce N.C, Brockhurst M.A.  2017.  Defining the functional traits that drive bacterial decomposer community productivity. Isme Journal. 11:1680-1687.
Dansereau-Macias E., Despland E., Handa I.T.  2023.  Decreased Soil Microbial Biomass and Changed Microbial Community Composition following a Defoliation Event by the Forest Tent Caterpillar. ForestsForests. 14:12.
Holatko J., Hammerschmiedt T., Latal O., Kintl A., Mustafa A., Baltazar T., Malicek O., Brtnicky M..  2022.  Deciphering the Effectiveness of Humic Substances and Biochar Modified Digestates on Soil Quality and Plant Biomass Accumulation. Agronomy-Basel. 12:12.
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Al-Rabaiai A., Menezes-Blackburn D., Al-Ismaily S., Janke R., Pracejus B., Al-Alawi A., Al-Kindi M., Bol R..  2022.  Customized biochar for soil applications in arid land: Effect of feedstock type and pyrolysis temperature on soil microbial enumeration and respiration. Journal of Analytical and Applied Pyrolysis. 168:13.
Gergocs V., Florian N., Toth Z., Szili-Kovacs T., Mucsi M., Dombos M..  2022.  Crop species and year affect soil-dwelling Collembola and Acari more strongly than fertilisation regime in an arable field. Applied Soil Ecology. 173:11.
Stegarescu G, Reintam E, Tõnutare T.  2021.  Cover crop residues effect on soil structural stability and phosphatase activity. Acta Agriculturae Scandinavica, Section B — Soil & Plant Science. 71:992-1005.
Orozco-Aceves M., Tibbett M., Standish R.J.  2017.  Correlation between soil development and native plant growth in forest restoration after surface mining. Ecological Engineering. 106:209-218.
Polain K., Joice G., Jones D., Pereg L., Nachimuthu G., Knox O.GG.  2019.  Coring lubricants can increase soil microbial activity in Vertisols. Journal of Microbiological Methods. 165:5.
Schoffer J.T, Aponte H., Neaman A., De la Fuente L.M, Arellano E.C, Gil P.M, Ginocchio R..  2022.  Copper content in soils and litter from fruit orchards in Central Chile and its relationship with soil microbial activity. Plant Soil and Environment. 68:115-128.
Nunes I., Jacquiod S., Brejnrod A., Holm P.E, Johansen A., Brandt K.K, Prieme A., Sorensen S.J.  2016.  Coping with copper: legacy effect of copper on potential activity of soil bacteria following a century of exposure. FEMS Microbiology Ecology. 92:12.
Oren A., Steinberger Y..  2008.  Coping with artifacts induced by CaCO3–CO2–H2O equilibria in substrate utilization profiling of calcareous soils. Soil Biology and Biochemistry. 40:2569-2577.
Dacal M, García-Palacios P, Asensio S, Cano-Díaz C, Gozalo B, Ochoa V, Maestre FT.  2020.  Contrasting mechanisms underlie short- and longer-term soil respiration responses to experimental warming in a dryland ecosystem. Global Change Biology. 26:5254-5266.
Garcia-Palacios P., Shaw E.A, Wall D.H, Hattenschwiler S..  2017.  Contrasting mass-ratio vs. niche complementarity effects on litter C and N loss during decomposition along a regional climatic gradient. Journal of Ecology. 105:968-978.
Bittleston L.S, Gralka M., Leventhal G.E, Mizrahi I., Cordero O.X.  2020.  Context-dependent dynamics lead to the assembly of functionally distinct microbial communities. Nature Communications. 11:10.
Wacker T.S, Jensen L.S, Thorup-Kristensen K..  2022.  Conservation agriculture affects soil organic matter distribution, microbial metabolic capacity and nitrogen turnover under Danish field conditions. Soil & Tillage ResearchSoil & Tillage Research. 224:13.