Publications

Found 156 results
Author Title Type [ Year(Desc)]
Filters: First Letter Of Last Name is L  [Clear All Filters]
2021
Ivashchenko K., Lepore E., Vasenev V., Ananyeva N., Demina S., Khabibullina F., Vaseneva I., Selezneva A., Dolgikh A., Sushko S. et al..  2021.  Assessing Soil-like Materials for Ecosystem Services Provided by Constructed Technosols. LandLand. 10:16.
Hammerschmiedt T, Holatko J, Pecina V, Huska D, Latal O, Kintl A, Radziemska M, Muhammad S, Gusiatin ZM, Kolackova M et al..  2021.  Assessing the potential of biochar aged by humic substances to enhance plant growth and soil biological activity. Chemical and Biological Technologies in Agriculture. 8:46.
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.
Wu Q, Lian R, Bai M, Bao J, Liu Y, Li S, Liang C, Qin H, Chen J, Xu Q.  2021.  Biochar co-application mitigated the stimulation of organic amendments on soil respiration by decreasing microbial activities in an infertile soil. Biology and Fertility of Soils.
Wu Q, Lian R, Bai M, Bao J, Liu Y, Li S, Liang C, Qin H, Chen J, Xu Q.  2021.  Biochar co-application mitigated the stimulation of organic amendments on soil respiration by decreasing microbial activities in an infertile soil. Biology and Fertility of Soils.
Wu Q, Lian R, Bai M, Bao J, Liu Y, Li S, Liang C, Qin H, Chen J, Xu Q.  2021.  Biochar co-application mitigated the stimulation of organic amendments on soil respiration by decreasing microbial activities in an infertile soil. Biology and Fertility of Soils.
Wu Q, Lian R, Bai M, Bao J, Liu Y, Li S, Liang C, Qin H, Chen J, Xu Q.  2021.  Biochar co-application mitigated the stimulation of organic amendments on soil respiration by decreasing microbial activities in an infertile soil. Biology and Fertility of Soils.
Astacio L.MD, Prabhakara K.H, Li Z.Q, Mickalide H., Kuehn S..  2021.  Closed microbial communities self-organize to carbon. Proceedings of the National Academy of Sciences of the United States of America. 118:9.
Holatko J., Hammerschmiedt T., Kintl A., Danish S., Skarpa P., Latal O., Baltazar T., Fahad S., Akca H., Taban S. et al..  2021.  Effect of carbon-enriched digestate on the microbial soil activity. Plos OnePlos One. 16:13.
Moonis M., Lee J.K, Jin H., Kim D.G, Park J.H.  2021.  Effects of warming, wetting and nitrogen addition on substrate-induced respiration and temperature sensitivity of heterotrophic respiration in a temperate forest soil. Pedosphere. 31:363-372.
Semchenko M., Xue P.A, Leigh T..  2021.  Functional diversity and identity of plant genotypes regulate rhizodeposition and soil microbial activity. New Phytologist. 232:776-787.
Le Bagousse-Pinguet Y., Gross N., Saiz H., Maestre F.T, Ruiz S., Dacal M., Asensio S., Ochoa V., Gozalo B., Cornelissen J.HC et al..  2021.  Functional rarity and evenness are key facets of biodiversity to boost multifunctionality. Proceedings of the National Academy of Sciences of the United States of America. 118:8.
Hu Z.K, Chen C.Y, Chen X.Y, Yao J.N, Jiang L., Liu M.Q.  2021.  Home-field advantage in soil respiration and its resilience to drying and rewetting cycles. Science of The Total Environment. 750:10.
Cheng K, Tang H, Li C, Tang W, Xiao X, Yi Z.  2021.  Impact of long-term tillage management on utilization of microbial carbon sources in rhizosphere and non-rhizosphere soils under a double-cropping rice paddy field. Environmental Science and Pollution Research.
Llimos M., Segarra G., Sancho-Adamson M., Trillas M.I, Romanya J..  2021.  Impact of Olive Saplings and Organic Amendments on Soil Microbial Communities and Effects of Mineral Fertilization. Frontiers in Microbiology. 12:21.
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.
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.
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.
Kostin JE, Cesarz S, Lochner A, Schädler M, Macdonald CA, Eisenhauer N.  2021.  Land-use drives the temporal stability and magnitude of soil microbial functions and modulates climate effects. Ecological Applications. 31:e02325.
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.