MICROBIAL COMMUNITY MEDIATES HYDROXYL RADICAL PRODUCTION IN SOIL SLURRIES BY IRON REDOX TRANSFORMATION ArticleWan D., Liu F.-F., Chen J.-B., Kappler A., Kuzyakov Y., Liu C.-Q., Yu G.-H.Water Research. Том 220. 2022.
SOIL HEALTH EVALUATION APPROACHES ALONG A RECLAMATION CONSEQUENCE IN HANGZHOU BAY, CHINA ArticleWei L., Li Y., Zhu Z., Wang F., Liu X., Zhang W., Xiao M., Li G., Ding J., Chen J., Kuzyakov Y., Ge T.Agriculture, Ecosystems and Environment. Том 337. 2022.
LINKAGES BETWEEN THE TEMPERATURE SENSITIVITY OF SOIL RESPIRATION AND MICROBIAL LIFE STRATEGY ARE DEPENDENT ON SAMPLING SEASON ArticleYang 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.
MICROBIAL GROWTH RATES, CARBON USE EFFICIENCY AND ENZYME ACTIVITIES DURING POST-AGRICULTURAL SOIL RESTORATION ArticleSun T., Zhou J., Shi L., Feng W., Dippold M.A., Zang H., Kurganova I., Kalinina O., Giani L., Kuzyakov Y., De Gerenyu V.L.Catena. Том 214. 2022.
METABOLIC PATHWAYS OF CO2 FIXING MICROORGANISMS DETERMINED C-FIXATION RATES IN GRASSLAND SOILS ALONG THE PRECIPITATION GRADIENT ArticleHuang 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.
FUNGAL KEY PLAYERS OF CELLULOSE UTILIZATION: MICROBIAL NETWORKS IN AGGREGATES OF LONG-TERM FERTILIZED SOILS DISENTANGLED USING <SUP>13</SUP>C-DNA-STABLE ISOTOPE PROBING ArticleMiao Y., Lin Y., Chen Z., Zheng H., Niu Y., Liu D., Ding W., Kuzyakov Y.Science of the Total Environment. Том 832. 2022. 155051 с.
FROM ENERGY TO (SOIL ORGANIC) MATTER ArticleGunina A., Kuzyakov Y.Global Change Biology. Том 28. 2022. С. 2169-2182
GLYCOPROTEINS OF ARBUSCULAR MYCORRHIZA FOR SOIL CARBON SEQUESTRATION: REVIEW OF MECHANISMS AND CONTROLS ArticleAgnihotri R., Sharma M.P., Prakash A., Ramesh A., Bhattacharjya S., Patra A.K., Manna M.C., Kurganova I., Kuzyakov Y.Science of the Total Environment. Том 806. 2022.
PLANT AND SOIL ELEMENTAL C:N:P RATIOS ARE LINKED TO SOIL MICROBIAL DIVERSITY DURING GRASSLAND RESTORATION ON THE LOESS PLATEAU, CHINA ArticleYang Y., Liu H., Yang X., Yao H., Deng X., Wang Y., An S., Kuzyakov Y., Chang S.X.Science of the Total Environment. Том 806. 2022.
STOICHIOMETRIC REGULATION OF PRIMING EFFECTS AND SOIL CARBON BALANCE BY MICROBIAL LIFE STRATEGIES ArticleZhu 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.
A NOVEL BELOWGROUND IN-SITU GAS LABELING APPROACH: CH<SUB>4</SUB> OXIDATION IN DEEP PEAT USING PASSIVE DIFFUSION CHAMBERS AND <SUP>13</SUP>C EXCESS ArticleDorodnikov M., Fan L., Kuzyakov Y., Knorr K.H., Nilsson M.B.Science of the Total Environment. Том 806. 2022. 150457 с.
NETWORK ANALYSIS REVEALS BACTERIAL AND FUNGAL KEYSTONE TAXA INVOLVED IN STRAW AND SOIL ORGANIC MATTER MINERALIZATION ArticleXiao D., He X., Wang G., Xu X., Hu Y., Chen X., Zhang W., Su Y., Wang K., Soromotin A.V., Alharbi H.A., Kuzyakov Y.Applied Soil Ecology. Том 173. 2022.
EFFECTS OF PLASTIC FILM MULCH BIODEGRADABILITY ON NITROGEN IN THE PLANT-SOIL SYSTEM ArticleWang K., Wang C., Chen M., Misselbrook T., Kuzyakov Y., Soromotin A., Dong Q., Feng H., Jiang R.Science of the Total Environment. Том 833. 2022.
EFFECT OF LONG-TERM FERTILISATION ON ENZYME ACTIVITIES AND MICROBIAL COMMUNITY COMPOSITION IN THE RICE RHIZOSPHERE ArticleLi W., Kuzyakov Y., Zheng Y., Liu M., Wu M., Dong Y., Li Z.Acta Agriculturae Scandinavica Section B: Soil and Plant Science. Том 72. 2022. С. 454-462
DEEP-C STORAGE: BIOLOGICAL, CHEMICAL AND PHYSICAL STRATEGIES TO ENHANCE CARBON STOCKS IN AGRICULTURAL SUBSOILS ArticleButton 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.
PHOSPHORUS ADDITION DECREASES PLANT LIGNIN BUT INCREASES MICROBIAL NECROMASS CONTRIBUTION TO SOIL ORGANIC CARBON IN A SUBALPINE FOREST ArticleLuo R., Kuzyakov Y., Zhu B., Qiang W., Zhang Y., Pang X.Global Change Biology. Том 28. 2022. С. 4194-4210
SOIL PORE ARCHITECTURE AND RHIZOSPHERE LEGACY DEFINE N<SUB>2</SUB>O PRODUCTION IN ROOT DETRITUSPHERE ArticleKim 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.
THREE SOURCE-PARTITIONING OF CO2 FLUXES BASED ON A DUAL-ISOTOPE APPROACH TO INVESTIGATE INTERACTIONS BETWEEN SOIL ORGANIC CARBON, GLUCOSE AND STRAW ArticleChen Z., Kumar A., Brookes P.C., Kuzyakov Y., Luo Y., Xu J.Science of the Total Environment. Том 811. 2022.
LOW CARBON AVAILABILITY IN PALEOSOLS NONLINEARLY ATTENUATES TEMPERATURE SENSITIVITY OF SOIL ORGANIC MATTER DECOMPOSITION ArticleSu J., Zhang H., Han X., Peñuelas J., Filimonenko E., Jiang Y., Kuzyakov Y., Wei C.Global Change Biology. Том 28. 2022. С. 4180-4193
INCREASING CONTRIBUTION OF MICROBIAL RESIDUES TO SOIL ORGANIC CARBON IN GRASSLAND RESTORATION CHRONOSEQUENCE ArticleYang Y., Dou Y., Wang B., Wang Y., Liang C., An S., Soromotin A., Kuzyakov Y.Soil Biology and Biochemistry. Том 170. 2022.
VULNERABILITY AND DRIVING FACTORS OF SOIL INORGANIC CARBON STOCKS IN CHINESE CROPLANDS ArticleTao J., Raza S., Zhao M., Cui J., Wang P., Sui Y., Zamanian K., Kuzyakov Y., Xu M., Chen Z., Zhou J.Science of the Total Environment. Том 825. 2022.
PADDY SOILS HAVE A MUCH HIGHER MICROBIAL BIOMASS CONTENT THAN UPLAND SOILS: A REVIEW OF THE ORIGIN, MECHANISMS, AND DRIVERS ArticleWei L., Ge T., Zhu Z., Ye R., Peñuelas J., Li Y., Lynn T.M., Jones D.L., Wu J., Kuzyakov Y.Agriculture, Ecosystems and Environment. Том 326. 2022.
MICROBIAL IRON REDUCTION COMPENSATES FOR PHOSPHORUS LIMITATION IN PADDY SOILS ArticleWang C., Thielemann L., Dippold M.A., Guggenberger G., Kuzyakov Y., Banfield C.C., Ge T., Guenther S., Bork P., Horn M.A., Dorodnikov M.Science of the Total Environment. Том 837. 2022.
INVESTIGATION OF THE EFFECTS OF THE CONVERSION OF FORESTS AND RANGELAND TO CROPLAND ON FERTILITY AND SOIL FUNCTIONS IN MOUNTAINOUS SEMI-ARID LANDSCAPE ArticleKooch Y., Ghorbanzadeh N., Kuzyakov Y., Praeg N., Ghaderi E.Catena. Том 210. 2022.
NUTRIENTS IN THE RHIZOSPHERE: A META-ANALYSIS OF CONTENT, AVAILABILITY, AND INFLUENCING FACTORS ArticleLiu S., He F., Kuzyakov Y., Xiao H., Hoang D.T.T., Pu S., Razavi B.S.Science of the Total Environment. Том 826. 2022.
STIMULATION OF AMMONIA OXIDIZER AND DENITRIFIER ABUNDANCES BY NITROGEN LOADING: POOR PREDICTABILITY FOR INCREASED SOIL N2O EMISSION ArticleZhang Y., Zhang F., Abalos D., Luo Y., Hui D., Hungate B.A., García-Palacios P., Kuzyakov Y., Olesen J.E., Jørgensen U., Chen J.Global Change Biology. Том 28. 2022. С. 2158-2168
PRIMING EFFECTS IN SOILS ACROSS EUROPE ArticleSiles J.A., Díaz-López M., Vera A., Eisenhauer N., Guerra C.A., Smith L.C., Buscot F., Reitz T., Breitkreuz C., Crowther T.W., Orgiazzi A., Kuzyakov Y., Delgado-Baquerizo M., Bastida F., Van Den Hoogen J.Global Change Biology. Том 28. 2022. С. 2146-2157
INITIAL SOIL FORMATION BY BIOCRUSTS: NITROGEN DEMAND AND CLAY PROTECTION CONTROL MICROBIAL NECROMASS ACCRUAL AND RECYCLING ArticleWang 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.
SOURCES AND INTENSITY OF CH<SUB>4</SUB> PRODUCTION IN PADDY SOILS DEPEND ON IRON OXIDES AND MICROBIAL BIOMASS ArticleLi Y., Zhu Z., Wei X., Li B., Wu J., Liu S., Ge T., Kuzyakov Y., Kim P.J.Biology and Fertility of Soils. Том 58. 2022. С. 181-191
MODERATE GRAZING INCREASES NEWLY ASSIMILATED CARBON ALLOCATION BELOWGROUND ArticleZhao Y., Tian Y., Gao Q., Li X., Zhang Y., Ding Y., Ouyang S., Yurtaev A., Kuzyakov Y.Rhizosphere. Том 22. 2022.
HIGH FREQUENCY OF EXTREME PRECIPITATION INCREASES STIPA GRANDIS BIOMASS BY ALTERING PLANT AND MICROBIAL NITROGEN ACQUISITION ArticleWen S., Tian Y., Ouyang S., Song M., Li X., Zhang Y., Gao S., Xu X., Kuzyakov Y.Biology and Fertility of Soils. Том 58. 2022. С. 63-75
NITROGEN ADDITION TO SOIL AFFECTS MICROBIAL CARBON USE EFFICIENCY: META-ANALYSIS OF SIMILARITIES AND DIFFERENCES IN <SUP>13</SUP>C AND <SUP>18</SUP>O APPROACHES ArticleHu J., Huang C., Zhou S., Kuzyakov Y.Global Change Biology. 2022.
PLANT–MICROBIAL COMPETITION FOR AMINO ACIDS DEPENDS ON SOIL ACIDITY AND THE MICROBIAL COMMUNITY ArticlePan W., Tang S., Zhou J., Liu M., Xu M., Kuzyakov Y., Ma Q., Wu L.Plant and Soil. Том 475. 2022. С. 457-471
RHIZOSPHERE BACTERIOME STRUCTURE AND FUNCTIONS ArticleLing N., Wang T., Kuzyakov Y.Nature Communications. Том 13. 2022.
FERTILIZATION EFFECTS ON SOIL MICROBIAL COMPOSITION AND NUTRIENT AVAILABILITY IN INTEGRATED RICE-LIVESTOCK PRODUCTION SYSTEMS ArticleDenardin L.G.D.O., Martins A.P., Flores J.P.M., Alves L.A., Pires C.B., Machado D.R., Anghinoni I., Carvalho P.C.F., Kuzyakov Y., Rice C.W., Chabbi A.Applied Soil Ecology. Том 174. 2022.
THREE SOURCE-PARTITIONING OF CO<SUB>2</SUB> FLUXES BASED ON A DUAL-ISOTOPE APPROACH TO INVESTIGATE INTERACTIONS BETWEEN SOIL ORGANIC CARBON, GLUCOSE AND STRAW ArticleChen Z., Brookes P.C., Luo Y., Xu J., Kumar A., Kuzyakov Y.Science of the Total Environment. Том 811. 2022. 152163 с.
SYNERGY OF SAPROTROPHS WITH MYCORRHIZA FOR LITTER DECOMPOSITION AND HOTSPOT FORMATION DEPENDS ON NUTRIENT AVAILABILITY IN THE RHIZOSPHERE ArticleCao T., Fang Y., Chen Y., Kong X., Yang J., Alharbi H., Kuzyakov Y., Tian X.Geoderma. Том 410. 2022.
DIVERSIFIED CROPPING SYSTEMS BENEFIT SOIL CARBON AND NITROGEN STOCKS BY INCREASING AGGREGATE STABILITY: RESULTS OF THREE FRACTIONATION METHODS ArticleYan Z., Zhou J., Yang L., Gunina A., Yang Y., Peixoto L., Zeng Z., Zang H., Kuzyakov Y.Science of the Total Environment. Том 824. 2022.
CATALYTIC EFFICIENCY OF SOIL ENZYMES EXPLAINS TEMPERATURE SENSITIVITY: INSIGHTS FROM PHYSIOLOGICAL THEORY ArticleLiu C., Tian H., Gu X., Li N., Zhao X., Lei M., Alharbi H., Megharaj M., He W., Kuzyakov Y.Science of the Total Environment. Том 822. 2022.
ROOT EXUDATE CHEMISTRY AFFECTS SOIL CARBON MOBILIZATION VIA MICROBIAL COMMUNITY REASSEMBLY ArticleWen T., Yu G.-H., Hong W.-D., Yuan J., Niu G.-Q., Xie P.-H., Sun F.-S., Guo L.-D., Kuzyakov Y., Shen Q.-R.Fundamental Research. 2022.
THE EFFECT OF FERTILIZER TYPE ON NITROGEN UPTAKE BY MAIZE FROM RECENTLY FORMED SOIL ORGANIC MATTER<SUP>#</SUP> ArticlePedersen I.F., Hansen J., Peixoto L., Enggrob K.L., Rasmussen J., Kuzyakov Y.Journal of Plant Nutrition and Soil Science. Том 185. 2022. С. 168-176
TEMPERATURE SENSITIVITY OF ANAEROBIC METHANE OXIDATION VERSUS METHANOGENESIS IN PADDY SOIL: IMPLICATIONS FOR THE CH<SUB>4</SUB> BALANCE UNDER GLOBAL WARMING ArticleFan L., Kuzyakov Y., Dorodnikov M., Dippold M.A., Thiel V., Ge T., Wu J.Global Change Biology. Том 28. 2022. С. 654-664
PLANT SPECIES AND PLANT NEIGHBOR IDENTITY AFFECT ASSOCIATIONS BETWEEN PLANT ASSIMILATED C INPUTS AND SOIL PORES ArticleZheng H., Guber A.K., Kuzyakov Y., Zhang W., Kravchenko A.N.Geoderma. Том 407. 2022.
DEPTH EFFECTS ON BACTERIAL COMMUNITY ASSEMBLY PROCESSES IN PADDY SOILS ArticleLi W., Kuzyakov Y., Zheng Y., Li P., Li G., Liu M., Alharbi H.A., Li Z.Soil Biology and Biochemistry. Том 165. 2022.
NITRITE-DEPENDENT ANAEROBIC OXIDATION DECREASES METHANE EMISSIONS FROM PEATLANDS ArticleShi Y., Ma Q., Kuzyakov Y., Sheng L., Liu H., Wang Z.Soil Biology and Biochemistry. Том 169. 2022.
C:P STOICHIOMETRIC IMBALANCE BETWEEN SOIL AND MICROORGANISMS DRIVES MICROBIAL PHOSPHORUS TURNOVER IN THE RHIZOSPHERE ArticlePeng Y., Duan Y., Huo W., Zhang Z., Huang D., Xu M., Wang X., Yang X., Wang B., Kuzyakov Y., Feng G.Biology and Fertility of Soils. Том 58. 2022. С. 421-433
INCREASED SOIL ORGANIC MATTER AFTER 28 YEARS OF NITROGEN FERTILIZATION ONLY WITH PLASTIC FILM MULCHING IS CONTROLLED BY MAIZE ROOT BIOMASS ArticleDing F., Ji D., Yan K., Dijkstra F.A., Bao X., Li S., Kuzyakov Y., Wang J.Science of the Total Environment. Том 810. 2022.
MICROBIAL TRADEOFFS IN INTERNAL AND EXTERNAL USE OF RESOURCES REGULATED BY PHOSPHORUS AND CARBON AVAILABILITY ArticleBilyera N., Dippold M.A., Bleicher J., Maranguit D., Kuzyakov Y., Blagodatskaya E.European Journal of Soil Biology. Том 106. 2021.
TIME-LAPSE APPROACH TO CORRECT DEFICIENCIES OF 2D SOIL ZYMOGRAPHY ArticleGuber A., Blagodatskaya E., Juyal A., Razavi B.S., Kuzyakov Y., Kravchenko A.Soil Biology and Biochemistry. Том 157. 2021.
PLANT CARBON INVESTMENT IN FINE ROOTS AND ARBUSCULAR MYCORRHIZAL FUNGI: A CROSS-BIOME STUDY ON NUTRIENT ACQUISITION STRATEGIES ArticleStock S.C., Koester M., Boy J., Godoy R., Nájera F., Matus F., Merino C., Abdallah K., Leuschner C., Spielvogel S., Gorbushina A.A., Kuzyakov Y., Dippold M.A.Science of the Total Environment. Том 781. 2021.