ARBUSCULAR MYCORRHIZA ENHANCES RHIZODEPOSITION AND REDUCES THE RHIZOSPHERE PRIMING EFFECT ON THE DECOMPOSITION OF SOIL ORGANIC MATTER СтатьяZhou J., Zang H., Loeppmann S., Gube M., Kuzyakov Y., Pausch J.Soil Biology and Biochemistry. Том 140. 2020.
EFFECTS OF SIX-YEAR BIOCHAR AMENDMENT ON SOIL AGGREGATION, CROP GROWTH, AND NITROGEN AND PHOSPHORUS USE EFFICIENCIES IN A RICE-WHEAT ROTATION СтатьяZhang Q., Song Y., Wu Z., Yan X., Gunina A., Kuzyakov Y., Xiong Z.Journal of Cleaner Production. Том 242. 2020.
THE PERSISTENCE OF BACTERIAL DIVERSITY AND ECOSYSTEM MULTIFUNCTIONALITY ALONG A DISTURBANCE INTENSITY GRADIENT IN KARST SOIL СтатьяXue Y., Tian J., Quine T.A., Powlson D., Xing K., Yang L., Kuzyakov Y., Dungait J.A.J.Science of the Total Environment. Том 748. 2020.
SYNERGY EFFECT OF PEROXIDASE ENZYMES AND FENTON REACTIONS GREATLY INCREASE THE ANAEROBIC OXIDATION OF SOIL ORGANIC MATTER СтатьяMerino C., Kuzyakov Y., Godoy K., Cornejo P., Matus F.Scientific Reports. Том 10. 2020.
SOIL ORGANIC MATTER, NITROGEN AND PH DRIVEN CHANGE IN BACTERIAL COMMUNITY FOLLOWING FOREST CONVERSION СтатьяLiu T., Wu X., Li H., Alharbi H., Wang J., Dang P., Chen X., Kuzyakov Y., Yan W.Forest Ecology and Management. Том 477. 2020.
IMPACT OF MANURE ON SOIL BIOCHEMICAL PROPERTIES: A GLOBAL SYNTHESIS СтатьяLiu S., Wang J., Pu S., Blagodatskaya E., Kuzyakov Y., Razavi B.S.Science of the Total Environment. Том 745. 2020.
CONVERSION OF CROPLAND TO NATURAL VEGETATION BOOSTS MICROBIAL AND ENZYME ACTIVITIES IN SOIL СтатьяOvsepyan L., Kurganova I., Kuzyakov Y., Lopes De Gerenyu V.Science of the Total Environment. Том 743. 2020.
DECREASED RHIZODEPOSITION, BUT INCREASED MICROBIAL CARBON STABILIZATION WITH SOIL DEPTH DOWN TO 3.6 M СтатьяPeixoto L., Elsgaard L., Rasmussen J., Kuzyakov Y., Banfield C.C., Dippold M.A., Olesen J.E.Soil Biology and Biochemistry. Том 150. 2020.
SOIL PHOSPHORUS ACCUMULATION CHANGES WITH DECREASING TEMPERATURE ALONG A 2300 M ALTITUDE GRADIENT СтатьяMou X.M., Wu Y., Niu Z., Jia B., Guan Z.-H., Chen J., Li H., Cui H., Kuzyakov Y., Li X.G.Agriculture, Ecosystems and Environment. Том 301. 2020.
EFFECTS OF DRYING/REWETTING ON SOIL AGGREGATE DYNAMICS AND IMPLICATIONS FOR ORGANIC MATTER TURNOVER СтатьяNajera F., Dippold M.A., Boy J., Seguel O., Koester M., Stock S., Merino C., Kuzyakov Y., Matus F.Biology and Fertility of Soils. Том 56. 2020. С. 893-905
META-ANALYSIS OF HEAVY METAL EFFECTS ON SOIL ENZYME ACTIVITIES СтатьяAponte H., Meli P., Butler B., Paolini J., Matus F., Merino C., Cornejo P., Kuzyakov Y.Science of the Total Environment. Том 737. 2020.
15N-TRACER APPROACH TO ASSESS NITROGEN CYCLING PROCESSES: NITRATE REDUCTION, ANAMMOX AND DENITRIFICATION IN DIFFERENT PH CROPLAND SOILS СтатьяXue D., Yu H., Fang Y., Shan J., Xi D., Wang Y., Kuzyakov Y., Wang Z.-L.Catena. Том 193. 2020.
AN IRON-DEPENDENT BURST OF HYDROXYL RADICALS STIMULATES STRAW DECOMPOSITION AND CO2 EMISSION FROM SOIL HOTSPOTS: CONSEQUENCES OF FENTON OR FENTON-LIKE REACTIONS СтатьяDu H.-Y., Chen C.-M., Yu G.-H., Polizzotto M.L., Sun F.-S., Kuzyakov Y.Geoderma. Том 375. 2020.
ORGANIC MATTER STABILIZATION IN AGGREGATES AND DENSITY FRACTIONS IN PADDY SOIL DEPENDING ON LONG-TERM FERTILIZATION: TRACING OF PATHWAYS BY 13C NATURAL ABUNDANCE СтатьяAtere C.T., Gunina A., Zhu Z., Xiao M., Liu S., Kuzyakov Y., Chen L., Deng Y., Wu J., Ge T.Soil Biology and Biochemistry. Том 149. 2020.
COMBINED BIOCHAR AND NITROGEN APPLICATION STIMULATES ENZYME ACTIVITY AND ROOT PLASTICITY СтатьяSong X., Razavi B.S., Ludwig B., Zamanian K., Zang H., Kuzyakov Y., Dippold M.A., Gunina A.Science of the Total Environment. Том 735. 2020.