Publications

Found 129 results
Author [ Title(Desc)] Type Year
Filters: Keyword is Agriculture  [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 
B
Al-Amri M., Souissi Y., Menezes-Blackburn D., Al-Mayahi A., Al-Ismaily S., Al-Siyabi B., Rethinasamy V..  2024.  Bacterial Communities Associated with the Oxidation of Elemental Sulfur in Calcareous Soils of Oman. Journal of Soil Science and Plant Nutrition. :14.
Hammerschmiedt T., Holatko J., Sudoma M., Kintl A., Vopravil J., Ryant P., Skarpa P., Radziemska M., Latal O., Brtnicky M..  2021.  Biochar and Sulphur Enriched Digestate: Utilization of Agriculture Associated Waste Products for Improved Soil Carbon and Nitrogen Content, Microbial Activity, and Plant Growth. Agronomy-Basel. 11:14.
Borno M.L, Müller-Stöver D.S, Liu F.L.  2022.  Biochar modifies the content of primary metabolites in the rhizosphere of well-watered and drought-stressed Zea mays L. (maize). Biology and Fertility of Soils. 58:633-647.
Weber T., Ramirez G.H, Quideau S., MacKenzie M.D.  2024.  Biochar-manure impacts wheat and canola grain productivity, dry matter partitioning, and protein content in western Canada. Soil Science Society of America Journal. 88:109-125.
Rodas-Gaitan H., Fritz J., Dahn C., Kopke U., Joergensen R.G.  2022.  Biodynamic compost effects on soil parameters in a 27-year long-term field experiment. Chemical and Biological Technologies in Agriculture. 9:11.
Dushchanova K.S, Ukrainskiy P.A, Kashirskaya N.N, Khomutova T.E, Borisov A.V.  2024.  Biomass and Functional Diversity of Microbial Communities in Catenas of Reserved and Arable Gray Soils and Chernozems. Eurasian Soil ScienceEurasian Soil Science. 57:275-289.
Lambie S.M, Mason N.WH, Mudge P.L.  2019.  Bovine urine inhibits microbial function and increases urea turnover in dairy grazed soils. Soil Research. 57:489-499.
C
Liang Z., Elsgaard L., Nicolaisen M.H, Lyhne-Kjaerbye A., Olesen J.E.  2018.  Carbon mineralization and microbial activity in agricultural topsoil and subsoil as regulated by root nitrogen and recalcitrant carbon concentrations. Plant and Soil. 433:65-82.
Coonan E.C, Richardson A.E, Kirkby C.A, Macdonald L.M, Amidy M.R, Strong C.L, Kirkegaard J.A.  2020.  Carbon stability in a texture contrast soil in response to depth and long-term phosphorus fertilisation of grazed pasture. Soil Research. 58:21-34.
Schroeder J., Jannoura R., Beuschel R., Pfeiffer B., Dyckmans J., Murugan R., Chavannavar S., Wachendorf C., Joergensen R.G.  2020.  Carbon use efficiency and microbial functional diversity in a temperate Luvisol and a tropical Nitisol after millet litter and N addition. Biology and Fertility of Soils. 56:1139-1150.
Yu J., Glazer N., Steinberger Y..  2014.  Carbon utilization, microbial biomass, and respiration in biological soil crusts in the Negev Desert. Biology and Fertility of Soils. 50:285-293.
Song Y., Yuan G.S, Wu Q.F, Situ G., Liang C.F, Qin H., Chen J.H.  2023.  Change in Microbial Metabolic Quotient Under Biochar Amendment Was Associated with Soil Organic Carbon Quality, Microbial Community Composition, and Enzyme Activity in Bulk and Rhizosphere Soils in an Acid Rice Paddy. Journal of Soil Science and Plant Nutrition. :14.
Gao F., Fan H.X, Chapman S.J, Yao H.Y.  2022.  Changes in soil microbial community activity and composition following substrate amendment within the MicroResp (TM) system. Journal of Soils and Sediments. 22:1242-1251.
Shihan A., Hattenschwiler S., Milcu A., Joly F.X, Santonja M., Fromin N..  2017.  Changes in soil microbial substrate utilization in response to altered litter diversity and precipitation in a Mediterranean shrubland. Biology and Fertility of Soils. 53:171-185.
Fritz A.L, Jannoura R., Beuschel R., Steiner C., Buerkert A., Joergensen R.G.  2022.  The combined application of nitrogen and biochar reduced microbial carbon limitation in irrigated soils of West African urban horticulture. Chemical and Biological Technologies in Agriculture. 9:12.
Lebrun M., Zahid Z., Bednik M., Medynska-Juraszek A., Szakova J., Brtnicky M., Holatko J., Bourgerie S., Beesley L., Pohorely M. et al..  2024.  Combined biochar and manure addition to an agricultural soil benefits fertility, microbial activity, and mitigates manure-induced CO2 emissions. Soil Use and Management. 40:15.
Drut B., Fustec J., Oddos L., Cannavacciuolo M., Brauman A., Cassagne N..  2023.  The combined effects of faba bean and endogeic earthworms on soil microbial activity in intercrops. European Journal of Soil Biology. 117:11.
Ujvari G., Borsodi A.K, Megyes M., Mucsi M., Szili-Kovacs T., Szabo A., Szalai Z., Jakab G., Marialigeti K..  2020.  Comparison of Soil Bacterial Communities from Juvenile Maize Plants of a Long-Term Monoculture and a Natural Grassland. Agronomy-Basel. 10:15.
Mustafa A., Holatko J., Hammerschmiedt T., Kucerik J., Skarpa P., Kintl A., Racek J., Baltazar T., Malicek O., Brtnicky M..  2022.  Comparison of the Responses of Soil Enzymes, Microbial Respiration and Plant Growth Characteristics under the Application of Agricultural and Food Waste-Derived Biochars. Agronomy-Basel. 12:14.
Chodak M., Klimek B., Niklinska M..  2016.  Composition and activity of soil microbial communities in different types of temperate forests. Biology and Fertility of Soils. 52:1093-1104.
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.