Bacterial diversity rather than available Cd is the main driver of exoenzyme activity and stoichiometry after soil amendments in mildly contaminated soil

Author:

Wang Xinqi,Wu Xiuwen,Zhang Beibei,Li Zhuoqing,Du Huihui,Tie Boqing,Lei Ming

Funder

National Key Research & Development Program of China

National Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Stratigraphy,Earth-Surface Processes

Reference71 articles.

1. Abbas T, Rizwan M, Ali S, Adrees M, Zia-ur-Rehman M, Qayyum MF, Ok YS, Murtaza G (2017) Effect of biochar on alleviation of cadmium toxicity in wheat (Triticum aestivum L.) grown on Cd-contaminated saline soil. Environ Sci Pollut Res 25:1–13

2. Allison SD, Weintraub MN, Gartner TB, Waldrop MP (2011) Evolutionary economic principles as regulators of soil enzyme production and ecosystem function. Springer-Verlag, Berlin Heidelberg, Soil Enzymology, pp 229–243

3. Allison SD, Vitousek PM (2005) Responses of extracellular enzymes to simple and complex nutrient inputs. Soil Biol Biochem 37:937–944

4. Aponte H, Meli P, Butler B, Paolini J, Matus F, Merino C, Cornejo P, Kuzyakov Y (2020) Meta-analysis of heavy metal effects on soil enzyme activities. Sci Total Environ

5. Ashraf MN, Abrar MM (2020) Soil and microbial biomass stoichiometry regulate soil organic carbon and nitrogen mineralization in rice-wheat rotation subjected to long-term fertilization. J Soils Sediment 20:3103–3113

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