| 論文題目 | 作者 | 發(fā)表年度 | 刊物名稱 |
Elevated CO2 decreases soil carbon stability in Tibetan Plateau |
Zhao, G., Liang, C., Feng, X., Liu, L., Zhu, J., Chen, N., ... & Zhang, Y |
2020 |
Environmental Research Letters |
Turnover of gram-negative bacterial biomass-derived carbon through the microbial food web of an agricultural soil |
Zheng, T., Miltner, A., Liang, C., Nowak, K. M., & K?stner, M |
2020 |
Soil Biology and Biochemistry |
The soil microbial carbon pump: From conceptual insights to empirical assessments |
Zhu, X., Jackson, R. D., DeLucia, E. H., Tiedje, J. M., & Liang, C |
2020 |
Global Change Biology |
Microbial trade-off in soil organic carbon storage in a no-till continuous corn agroecosystem |
Zhu, X., Xie, H., Masters, M. D., Luo, Y., Zhang, X., & Liang, C |
2020 |
European Journal of Soil Biology |
Comparing microbial transformation of maize residue‐N and fertilizer‐N in soil using amino sugar‐specific 15N analysis |
Hu, G., Zhao, Y., Liu, X., Zhou, F., Zhang, W., Shao, S., ... & Zhang, X |
2020 |
European Journal of Soil Science |
The effects of warming and soil chemistry on bacterial community structure in Arctic tundra soils |
Ricketts, M. P., Matamala, R., Jastrow, J. D., Antonopoulos, D. A., Koval, J., Ping, C. L., ... & Gonzalez-Meler, M. A |
2020 |
Soil Biology and Biochemistry |
Tradeoffs among microbial life history strategies influence the fate of microbial residues in subtropical forest soils |
Shao, P., Lynch, L., Xie, H., Bao, X., & Liang, C |
2020 |
Soil Biology and Biochemistry |
Effects of biochar, compost and straw input on root exudation of maize (Zea mays L.): From function to morphology |
Sun, C., Wang, D., Shen, X., Li, C., Liu, J., Lan, T., ... & Zhang, Y |
2020 |
Agriculture, Ecosystems & Environment |
Stabilization of microbial residues in soil organic matter after two years of decomposition |
Wang, C., Wang, X., Pei, G., Xia, Z., Peng, B., Sun, L., ... & Dai, W |
2020 |
Soil Biology and Biochemistry |
Distinct regulation of microbial processes in the immobilization of labile carbon in different soils |
Wang, X., Zhang, W., Zhou, F., Liu, Y., He, H., & Zhang, X |
2020 |
Soil Biology and Biochemistry |
Soil extracellular enzyme stoichiometry reflects the shift from P-to N-limitation of microorganisms with grassland restoration |
Yang, Y., Liang, C., Wang, Y., Cheng, H., An, S., & Chang, S. X |
2020 |
Soil Biology and Biochemistry |
The strategy of microbial utilization of the deposited N in a temperate forest soilits role in soil organic matter development |
Zhang, W., Zhang, X., Bai, E., Cui, Y., He, H., & Zhang, X |
2020 |
Biology and Fertility of Soils |
Identification of microbial strategies for labile substrate utilization at phylogenetic classification using a microcosm approach |
Wang, X., Zhang, W., Liu, Y., Jia, Z., Li, H., Yang, Y., ... & Zhang, X |
2020 |
Soil Biology and Biochemistry |
Permafrost thawing exhibits a greater influence on bacterial richness and community structure than permafrost age in Arctic permafrost soils |
Ji, M., Kong, W., Liang, C., Zhou, T., Jia, H., & Dong, X |
2020 |
The Cryosphere Discussions |
Coupling Bacterial Community Assembly to Microbial Metabolism across Soil Profiles |
Luan, L., Liang, C., Chen, L., Wang, H., Xu, Q., Jiang, Y., & Sun, B |
2020 |
Msystems |
Frequency but not amount of stover mulching orchestrates the decomposition pathways of soil micro-foodwebs in a no-tillage system |
Kou, X., Ma, N., Zhang, X., Xie, H., Zhang, X., Wu, Z., ... & Ferris, H |
2020 |
Soil Biology and Biochemistry |
Differential accumulation of microbial necromass and plant lignin in synthetic versus organic fertilizer-amended soil |
Li, J., Zhang, X., Luo, J., Lindsey, S., Zhou, F., Xie, H., ... & He, H |
2020 |
Soil Biology and Biochemistry |
Disentangling immobilization of nitrate by fungi and bacteria in soil to plant residue amendment |
Li, X., Li, Z., Zhang, X., Xia, L., Zhang, W., Ma, Q., & He, H |
2020 |
Geoderma |
Soil microbial carbon pump: Mechanism and appraisal |
Liang, C |
2020 |
Soil Ecology Letters |
Microbial necromass on the rise: the growing focus on its role in soil organic matter development |
Liang, C., K?stner, M., & Joergensen, R. G |
2020 |
Soil Biology and Biochemistry |
凍融交替對農(nóng)田氮磷淋溶影響的研究進展 |
鄧芳博, 鮑雪蓮, 梁超, 解宏圖 |
2020 |
中國生態(tài)農(nóng)業(yè)學(xué)報(中英文) |
森林次生演替過程中有機質(zhì)層和礦質(zhì)層土壤微生物殘體的變化 |
邵鵬帥,解宏圖,鮑雪蓮,梁超 |
2020 |
土壤學(xué)報 |
森林次生演替和土壤層次對微生物群落結(jié)構(gòu)的影響 |
邵鵬帥, 解宏圖, 鮑雪蓮, 梁超 |
2020 |
生態(tài)學(xué)雜志 |
秸稈還田結(jié)合氮肥減施對玉米產(chǎn)量和土壤性質(zhì)的影響 |
王學(xué)敏, 劉興, 郝麗英, 解宏圖, 張廣娜, 陳振華, 張玉蘭 |
2020 |
生態(tài)學(xué)雜志 |