Publications

Found 484 results
[ Author(Desc)] Title 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 
B
Berg N., Steinberger Y..  2010.  Are Biological Effects of Desert Shrubs More Important than Physical Effects on Soil Microorganisms? Microbial Ecology. 59:121-129.
Berg N., Steinberger Y..  2008.  Role of perennial plants in determining the activity of the microbial community in the Negev Desert ecosystem. Soil Biology and Biochemistry. 40:2686-2695.
Bernhardt L.T, Smith R.G, Grandy A.S, Mackay J.E, Warren N.D, Geyer K.M, Ernakovich J.G.  2022.  Soil microbial communities vary in composition and functional strategy across soil aggregate size class regardless of tillage. Elementa-Science of the Anthropocene. 10:19.
Beuschel R, Piepho H-P, Joergensen RGeorg, Wachendorf C.  2020.  Effects of converting a temperate short-rotation coppice to a silvo-arable alley cropping agroforestry system on soil quality indicators. Agroforestry Systems. 94:389-400.
Beuschel R., Piepho H.P, Joergensen R.G, Wachendorf C..  2019.  Similar spatial patterns of soil quality indicators in three poplar-based silvo-arable alley cropping systems in Germany. Biology and Fertility of Soils. 55:1-14.
Beuschel R., Piepho H.P, Joergensen R.G, Wachendorf C..  2020.  Impact of willow-based grassland alley cropping in relation to its plant species diversity on soil ecology of former arable land. Applied Soil Ecology. 147:8.
Birt HWG, Bonnett SAF.  2018.  Microbial mechanisms of carbon and nitrogen acquisition in contrasting urban soils. European Journal of Soil Biology. 88:1-7.
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.
Blouin M., Karimi B., Mathieu J., Lerch T.Z.  2015.  Levels and limits in artificial selection of communities. Ecology Letters. 18:1040-1048.
Bongiorno G., Bunemann E.K, Brussaard L., Mader P., Oguejiofor C.U, de Goede R.GM.  2020.  Soil management intensity shifts microbial catabolic profiles across a range of European long-term field experiments. Applied Soil Ecology. 154:13.
Bongiorno G..  2020.  Novel soil quality indicators for the evaluation of agricultural management practices: a biological perspective. Frontiers of Agricultural Science and Engineering. 7:257-274.
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.
Bonner M.TL, Allen D.E, Brackin R., Smith T.E, Lewis T., Shoo L.P, Schmidt S..  2020.  Tropical Rainforest Restoration Plantations Are Slow to Restore the Soil Biological and Organic Carbon Characteristics of Old Growth Rainforest. Microbial Ecology. 79:432-442.
Bonner M.TL, Shoo L.P, Brackin R., Schmidt S..  2018.  Relationship between microbial composition and substrate use efficiency in tropical soil. Geoderma. 315:96-103.
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.
Borsodi A.K, Mucsi M., Krett G., Szabo A., Felfoldi T., Szili-Kovacs T..  2021.  Variation in Sodic Soil Bacterial Communities Associated with Different Alkali Vegetation Types. Microorganisms. 9:19.
Boudiaf I., Baudoin E., Sanguin H., Beddiar A., Thioulouse J., Galiana A., Prin Y., Le Roux C., Lebrun M., Duponnois R..  2013.  The exotic legume tree species, Acacia mearnsii, alters microbial soil functionalities and the early development of a native tree species, Quercus suber, in North Africa. Soil Biology and Biochemistry. 65:172-179.
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.
Boulanger N., Aran D., Maul A., Camara B.I, Barthel C., Zaffino M., Lett M.C, Schnitzler A., Bauda P..  2024.  Multiple factors affecting Ixodes ricinus ticks and associated pathogens in European temperate ecosystems (northeastern France). Scientific Reports. 14:17.
Bousselin X., Cassagne N., Baux A., Valantin-Morison M., Herrera J.M, Lorin M., Hedan M., Fustec J..  2021.  Interactions between Plants and Plant-Soil in Functionally Complex Mixtures including Grass Pea, Faba Bean and Niger, Intercropped with Oilseed Rape. Agronomy-Basel. 11:18.
Brackin R., Robinson N., Lakshmanan P., Schmidt S..  2013.  Microbial function in adjacent subtropical forest and agricultural soil. Soil Biology and Biochemistry. 57:68-77.
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.
Brolsma K.M, Vonk J.A, Hoffland E., Mulder C., de Goede R.GM.  2015.  Effects of GM potato Modena on soil microbial activity and litter decomposition fall within the range of effects found for two conventional cultivars. Biology and Fertility of Soils. 51:913-922.
Brtnicky M., Pecina V., Holatko J., Hammerschmiedt T., Mustafa A., Kintl A., Fojt J., Baltazar T., Kucerik J..  2022.  Effect of biodegradable poly-3-hydroxybutyrate amendment on the soil biochemical properties and fertility under varying sand loads. Chemical and Biological Technologies in Agriculture. 9:13.
Brtnicky M., Mustafa A., Hammerschmiedt T., Kintl A., Trakal L., Beesley L., Ryant P., Omara-Ojungu C., Baltazar T., Holatko J..  2023.  Pre-activated biochar by fertilizers mitigates nutrient leaching and stimulates soil microbial activity. Chemical and Biological Technologies in Agriculture. 10:14.