RHIZOSPHERE BACTERIOME STRUCTURE AND FUNCTIONS ArticleLing N., Wang T., Kuzyakov Y.Nature Communications. Том 13. 2022.
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.
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.
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.
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.
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.
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
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.
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.
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
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
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
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
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.
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.