[HTML][HTML] Soil aggregate microstructure and microbial community structure mediate soil organic carbon accumulation: Evidence from one-year field experiment

W Zhang, LJ Munkholm, X Liu, T An, Y Xu, Z Ge, N Xie… - Geoderma, 2023 - Elsevier
Soil organic carbon (SOC) accumulation is easily susceptible to tillage managements, which
strongly affect soil structure and microbial community structure. Subsoiling is developed for …

Differential accumulation patterns of microbial necromass induced by maize root vs. shoot residue addition in agricultural Alfisols

Y Xu, X Gao, Y Liu, S Li, C Liang, R Lal… - Soil Biology and …, 2022 - Elsevier
Soil organic carbon (SOC) has significant implications in regulating soil health. Emerging
insights emphasize the important role of microbial anabolism in SOC storage by …

Climate-smart agriculture practice promotes sustainable maize production in northeastern China: Higher grain yield while less carbon footprint

X Feng, T Sun, J Guo, H Cai, C Qian, Y Hao, Y Yu… - Field Crops …, 2023 - Elsevier
Maize production is facing multiple challenges toward increasing crop productivity,
enhancing resource utilization, and mitigating climate change nowadays. Climate-smart …

Biopreparations for the decomposition of crop residues

P Rowińska, B Gutarowska, R Janas… - Microbial …, 2024 - Wiley Online Library
Recently, there has been growing interest in biopreparations that intensify the
decomposition of crop residues. These preparations can promote nutrient cycling and soil …

Crop root vs. shoot incorporation drives microbial residue carbon accumulation in soil aggregate fractions

Y Xu, X Gao, J Pei, L Sun, J Wang - Biology and Fertility of Soils, 2022 - Springer
Microbial necromass is a vital component of stable soil organic C (SOC). However, how crop
root vs. shoot residue incorporation regulates microbial necromass accumulation within …

[HTML][HTML] A potential CO2 carrier to improve the utilization of HCO3–by plant-soil ecosystem for carbon sink enhancement

F Liang, S Wei, L Ji, S Yan - Journal of Advanced Research, 2024 - Elsevier
Introduction Improving the rhizospheric HCO 3–utilization of plant-soil ecosystem could
increase the carbon sink effect of terrestrial ecosystem. However, to avoid its physiological …

Effects of salinity on microbial utilization of straw carbon and microbial residues retention in newly reclaimed coastal soil

D Yan, XE Long, L Ye, G Zhang, A Hu, D Wang… - European Journal of Soil …, 2021 - Elsevier
Soil salinity greatly influences soil organic carbon (SOC) stocks. However, how soil salinity
affect SOC formation by changing microbial utilization of newly input organic C and …

[HTML][HTML] The accumulation of fungal not bacterial residue carbon is management-dependent under conventional and organic practices in apple-orchard soil

X Liu, T Ma, H Zhang, K Yan, S Zhou - Geoderma, 2024 - Elsevier
Organic orchard management has been widely adopted to enhance soil fertility by improving
the sequestration of soil organic carbon (SOC). Microbial residue carbon plays an essential …

Improving the value of CO2 and biogas slurry in agricultural applications: A rice cultivation case

F Liang, S Wei, L Wu, S Yan - Environmental and Experimental Botany, 2023 - Elsevier
To cope with the global warming caused by CO 2 concentration rising, it should be
considered to supply CO 2 into plants through other suitable forms for encouraging more CO …

Soil microbial biomass and community composition along a latitudinal gradient in the arid valleys of southwest China

T Yang, X Li, B Hu, D Wei, Z Wang, W Bao - Geoderma, 2022 - Elsevier
Identifying the latitudinal patterns and drivers of soil microbial biomass and community
composition helps to better understand the biogeochemical cycling of carbon and nutrients …