SOIL HEALTH EVALUATION APPROACHES ALONG A RECLAMATION CONSEQUENCE IN HANGZHOU BAY, CHINA СтатьяWei 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.
MICROBIAL IRON REDUCTION COMPENSATES FOR PHOSPHORUS LIMITATION IN PADDY SOILS СтатьяWang 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.
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.
PADDY SOILS HAVE A MUCH HIGHER MICROBIAL BIOMASS CONTENT THAN UPLAND SOILS: A REVIEW OF THE ORIGIN, MECHANISMS, AND DRIVERS СтатьяWei 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.
SOURCES AND INTENSITY OF CH4 PRODUCTION IN PADDY SOILS DEPEND ON IRON OXIDES AND MICROBIAL BIOMASS СтатьяLi Y., Zhu Z., Wei X., Kuzyakov Y., Li B., Kim P.J., Wu J., Liu S., Ge T.Biology and Fertility of Soils. Том 58. 2022. С. 181-191
CARBON AND NITROGEN AVAILABILITY IN PADDY SOIL AFFECTS RICE PHOTOSYNTHATE ALLOCATION, MICROBIAL COMMUNITY COMPOSITION, AND PRIMING: COMBINING CONTINUOUS 13C LABELING WITH PLFA ANALYSIS СтатьяZhao Z., Kuzyakov Y., Ge T., Li Y., Zhu Z., Wu J., Gunina A., Peng P.Plant and Soil. Том 445. 2019. С. 137-152