RICE RHIZODEPOSITS AFFECT ORGANIC MATTER PRIMING IN PADDY SOIL: THE ROLE OF N FERTILIZATION AND PLANT GROWTH FOR ENZYME ACTIVITIES, CO<SUB>2</SUB> AND CH<SUB>4</SUB> EMISSIONS Article Zhu Z., Ge T., Liu S., Hu Y., Xiao M., Tong C., Kuzyakov Y., Wu J., Ye R. Soil Biology and Biochemistry. Elsevier Ltd. Vol. 116. 2018. P. 369-377
CARBON ALLOCATION AND FATE IN PADDY SOIL DEPENDING ON PHOSPHORUS FERTILIZATION AND WATER MANAGEMENT: RESULTS OF <SUP>13</SUP>C CONTINUOUS LABELLING OF RICE Article Atere C.T., Ge T., Zhu Z., Wei L., Zhou P., Kuzyakov Y., Wu J., He X. Canadian Journal of Soil Science. Agricultural Institute of Canada. Vol. 98. 2018. P. 469-483
TIBETAN SEDGES SEQUESTER MORE CARBON BELOWGROUND THAN GRASSES: A <SUP>13</SUP>C LABELING STUDY Article Mou X.M., Li X.G., Zhao N., Yu Y.W., Kuzyakov Y. Plant and Soil. Springer International Publishing. Vol. 426. 2018. P. 287-298
CARBON SEQUESTRATION AND TURNOVER IN SOIL UNDER THE ENERGY CROP MISCANTHUS: REPEATED <SUP>13</SUP>C NATURAL ABUNDANCE APPROACH AND LITERATURE SYNTHESIS Article Zang H., Kuzyakov Y., Blagodatskaya E., Wen Y., Xu X., Dyckmans J. GCB Bioenergy. Blackwell Publishing Ltd. Vol. 10. 2018. P. 262-271