Labile organic carbon fractions in the rhizosphere contribute to nitrogen and phosphorus uptake in rice under long-term crop rotations and nitrogen application

Author:

Wang Mengjia,Feng Xiangqian,Zhou Ziyu,Ma Hengyu,Ge Tida,Tang Caixian,Wang Danying,Chen Song

Publisher

Elsevier BV

Reference41 articles.

1. Soil carbon mineralization and aggregate distribution in various tillage practices of rice–wheat cropping system: a field and laboratory study;Ahmad;J. Soil Sci. Plant Nutr.,2023

2. Sensitivity of labile carbon fractions to tillage and organic matter management and their potential as comprehensive soil quality indicators across pedoclimatic conditions in Europe;Bongiorno;Ecol. Indic.,2019

3. Alternative dry-wet irrigation improves the rhizospheric oxygen environment and nitrogen transformation, and increases nitrogen absorption by rice plants;Cao;Journal of Plant Nutrition and Fertilizers.,2022

4. The influence of the type of crop residue on soil organic carbon fractions: An 11-year field study of rice-based cropping systems in Southeast China;Chen;Agr Ecosyst Environ,2016

5. Meta-analysis shows that plant mixtures increase soil phosphorus availability and plant productivity in diverse ecosystems;Chen;Nature Ecology & Evolution.,2022

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