CORRIGENDUM TO “NITRITE-DEPENDENT ANAEROBIC OXIDATION DECREASES METHANE EMISSIONS FROM PEATLANDS” [SOIL BIOLOGY AND BIOCHEMISTRY 169, 108658] (SOIL BIOLOGY AND BIOCHEMISTRY (2022) 169, (S0038071722001158), (10.1016/J.SOILBIO.2022.108658)) СтатьяShi Y., Ma Q., Kuzyakov Y., Sheng L., Liu H., Wang Z.Soil Biology and Biochemistry. Том 178. 2023.
LOCAL CLIMATE CONDITIONS EXPLAIN THE DIVERGENT CLIMATE CHANGE EFFECTS ON (DE)NITRIFICATION ACROSS THE GRASSLAND BIOME: A META-ANALYSIS СтатьяShi Y., Religieux E., Kuzyakov Y., Wang J., Hu J., Le Roux X.Soil Biology and Biochemistry. Том 187. 2023.
CARBON STABILIZATION PATHWAYS IN SOIL AGGREGATES DURING LONG-TERM FOREST SUCCESSION: IMPLICATIONS FROM Δ13C SIGNATURES СтатьяShi J., Deng L., Gunina A., Alharbi S., Wang K., Li J., Liu Y., Shangguan Z., Kuzyakov Y.Soil Biology and Biochemistry. Том 180. 2023.
MICROBIAL COMMUNITY SUCCESSION IN SOIL IS MAINLY DRIVEN BY CARBON AND NITROGEN CONTENTS RATHER THAN PHOSPHORUS AND SULPHUR CONTENTS СтатьяTang S., Ma Q., Marsden K.A., Chadwick D.R., Luo Y., Kuzyakov Y., Wu L., Jones D.L.Soil Biology and Biochemistry. Том 180. 2023.
LINKING BACTERIAL LIFE STRATEGIES WITH SOIL ORGANIC MATTER ACCRUAL BY KARST VEGETATION RESTORATION СтатьяHu P., Zhang W., Kuzyakov Y., Xiao L., Xiao D., Xu L., Chen H., Zhao J., Wang K.Soil Biology and Biochemistry. Том 177. 2023.
DYNAMICS OF ROOT–MICROBE INTERACTIONS GOVERNING CROP PHOSPHORUS ACQUISITION AFTER STRAW AMENDMENT СтатьяLi H., Zhu H., Li H., Zhang Y., Xu S., Cai S., Sulaiman A.A., Kuzyakov Y., Rengel Z., Zhang D.Soil Biology and Biochemistry. Том 181. 2023.
SOIL PORE ARCHITECTURE AND RHIZOSPHERE LEGACY DEFINE N<SUB>2</SUB>O PRODUCTION IN ROOT DETRITUSPHERE СтатьяKim K., Oerther M.S., Guber A.K., Kravchenko A.N., Gil J., Ostrom N.E., Gandhi H., Kuzyakov Y.Soil Biology and Biochemistry. Том 166. 2022. 108565 с.
DEEP-C STORAGE: BIOLOGICAL, CHEMICAL AND PHYSICAL STRATEGIES TO ENHANCE CARBON STOCKS IN AGRICULTURAL SUBSOILS СтатьяButton E.S., Chadwick D.R., Jones D.L., Pett-Ridge J., Murphy D.V., Kuzyakov Y.Soil Biology and Biochemistry. Том 170. 2022. 108697 с.
SOIL OXIDOREDUCTASE ZYMOGRAPHY: VISUALIZING SPATIAL DISTRIBUTIONS OF PEROXIDASE AND PHENOL OXIDASE ACTIVITIES AT THE ROOT-SOIL INTERFACE СтатьяKhosrozadeh S., Guber A., Kravchenko A., Ghaderi N., Blagodatskaya E.Soil Biology and Biochemistry. Том 167. 2022.
ARCHAEAL LIPIDS IN SOILS AND SEDIMENTS: WATER IMPACT AND CONSEQUENCES FOR MICROBIAL CARBON SEQUESTRATION СтатьяPei H., Yang H., Kuzyakov Y., Dang X., Zang J., Zhao S., Huang M., Wang C., Xie S.Soil Biology and Biochemistry. Том 173. 2022.
BIOCHAR INDUCES MINERALIZATION OF SOIL RECALCITRANT COMPONENTS BY ACTIVATION OF BIOCHAR RESPONSIVE BACTERIA GROUPS СтатьяLing L., Luo Y., Jiang B., Lv J., Meng C., Liao Y., Reid B.J., Ding F., Lu Z., Kuzyakov Y., Xu J.Soil Biology and Biochemistry. Том 172. 2022.
DEPTH EFFECTS ON BACTERIAL COMMUNITY ASSEMBLY PROCESSES IN PADDY SOILS СтатьяLi W., Kuzyakov Y., Zheng Y., Li P., Li G., Liu M., Alharbi H.A., Li Z.Soil Biology and Biochemistry. Том 165. 2022.
FREQUENT CARBON INPUT PRIMES DECOMPOSITION OF DECADAL SOIL ORGANIC MATTER СтатьяZhou J., Guillaume T., Wen Y., Blagodatskaya E., Shahbaz M., Zeng Z., Peixoto L., Zang H., Kuzyakov Y.Soil Biology and Biochemistry. Том 175. 2022.
INITIAL SOIL FORMATION BY BIOCRUSTS: NITROGEN DEMAND AND CLAY PROTECTION CONTROL MICROBIAL NECROMASS ACCRUAL AND RECYCLING СтатьяWang B., Huang Y., Li N., Yao H., Yang E., Soromotin A.V., Kuzyakov Y., Cheptsov V., Yang Y., An S.Soil Biology and Biochemistry. Том 167. 2022.
METABOLIC PATHWAYS OF CO2 FIXING MICROORGANISMS DETERMINED C-FIXATION RATES IN GRASSLAND SOILS ALONG THE PRECIPITATION GRADIENT СтатьяHuang Q., Huang Y., Wang B., Dippold M.A., Li H., Li N., Jia P., Zhang H., An S., Kuzyakov Y.Soil Biology and Biochemistry. Том 172. 2022.
LINKAGES BETWEEN THE TEMPERATURE SENSITIVITY OF SOIL RESPIRATION AND MICROBIAL LIFE STRATEGY ARE DEPENDENT ON SAMPLING SEASON СтатьяYang S., Wu H., Wang Z., Semenov M.V., Ye J., Yin L., Wang X., Kravchenko I., Semenov V., Kuzyakov Y., Jiang Y., Li H.Soil Biology and Biochemistry. Том 172. 2022.
INCREASING CONTRIBUTION OF MICROBIAL RESIDUES TO SOIL ORGANIC CARBON IN GRASSLAND RESTORATION CHRONOSEQUENCE СтатьяYang Y., Dou Y., Wang B., Wang Y., Liang C., An S., Soromotin A., Kuzyakov Y.Soil Biology and Biochemistry. Том 170. 2022.
STOICHIOMETRIC REGULATION OF PRIMING EFFECTS AND SOIL CARBON BALANCE BY MICROBIAL LIFE STRATEGIES СтатьяZhu Z., Fang Y., Liang Y., Li Y., Liu S., Li Y., Li B., Gao W., Yuan H., Kuzyakov Y., Wu J., Richter A., Ge T.Soil Biology and Biochemistry. Том 169. 2022.
NITRITE-DEPENDENT ANAEROBIC OXIDATION DECREASES METHANE EMISSIONS FROM PEATLANDS СтатьяShi Y., Ma Q., Kuzyakov Y., Sheng L., Liu H., Wang Z.Soil Biology and Biochemistry. Том 169. 2022.
HIGHER FREE-LIVING N<SUB>2</SUB> FIXATION AT ROCK-SOIL INTERFACES THAN TOPSOILS DURING VEGETATION RECOVERY IN KARST SOILS СтатьяTang Y., Wang S., Tian J., Li X., Yao M., Kuzyakov Y., Dungait J.A.J.Soil Biology and Biochemistry. Том 159. 2021. 108286 с.
RESISTANCE OF MICROBIAL COMMUNITY AND ITS FUNCTIONAL SENSITIVITY IN THE RHIZOSPHERE HOTSPOTS TO DROUGHT СтатьяZhang X., Myrold D.D., Shi L., Kuzyakov Y., Dai H., Dippold M.A., Meng X., Song X., Li Z., Zhou J., Razavi B.S., Thu Hoang D.T.Soil Biology and Biochemistry. Том 161. 2021.
ARBUSCULAR MYCORRHIZAL FUNGI AND GOETHITE PROMOTE CARBON SEQUESTRATION VIA HYPHAL-AGGREGATE MINERAL INTERACTIONS СтатьяJeewani P.H., Luo Y., Yu G., Fu Y., He X., Liang C., Kumar A., He Y., Kuzyakov Y., Qin H., Guggenberger G., Xu J., Van Zwieten L.Soil Biology and Biochemistry. Том 162. 2021.
ROOT AND MYCORRHIZAL STRATEGIES FOR NUTRIENT ACQUISITION IN FORESTS UNDER NITROGEN DEPOSITION: A META-ANALYSIS СтатьяMa X., Zhu B., Nie Y., Liu Y., Kuzyakov Y.Soil Biology and Biochemistry. Том 163. 2021.
LOWER MICROBIAL CARBON USE EFFICIENCY REDUCES CELLULOSE-DERIVED CARBON RETENTION IN SOILS AMENDED WITH COMPOST VERSUS MINERAL FERTILIZERS СтатьяMiao Y., Niu Y., Luo R., Li Y., Zheng H., Kuzyakov Y., Chen Z., Liu D., Ding W.Soil Biology and Biochemistry. Том 156. 2021.
STRONG PRIMING OF SOIL ORGANIC MATTER INDUCED BY FREQUENT INPUT OF LABILE CARBON СтатьяZhou J., Wen Y., Shi L., Marshall M.R., Kuzyakov Y., Blagodatskaya E., Zang H.Soil Biology and Biochemistry. Том 152. 2021.