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Chinese Journal of Ecology ›› 2026, Vol. 45 ›› Issue (6): 1810-1817.doi: 10.13292/j.1000-4890.202606.038

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Impacts of long-term straw return on soil carbon stability and fertility in rice-wheat rotation system.

KOU Na1, ZHAO Qiong1*, PENG Binwei1, TANG Qiang1, SONG Jing1, JIANG Hongqiang4, WU Wenge2,3*   

  1. (1School of Resources and Environmental Engineering, Anhui University, Hefei 230601, China; 2College of Resources and Environment, Anhui Agricultural University, Hefei 230036, China; 3Center of the Rice Farming Technical Innovation in the Middle/low Reaches of the Yangtze River of MOA, Anhui Academy of Agricultural Sciences, Hefei 230031, China; 4Baihu Academy of Agricultural Sciences, Hefei 231508, China).

  • Online:2026-06-10 Published:2026-12-01

Abstract: To explore the long-term effects of straw returning on soil carbon stability in rice fields, a nine-year field experiment was conducted in a rice-wheat rotation system located in the mid-to-lower reaches of the Yangtze River. There were four treatments, including combined rice and wheat straw returning, wheat straw returning, rice straw returning, and a control (no straw returning of rice or wheat). Soil organic carbon components and physicochemical properties were measured. The results showed that combined rice and wheat straw returning significantly increased soil ammonium nitrogen and available potassium concentrations (P<0.05). Straw returning significantly increased the concentrations of soluble, particulate, and total organic carbon (P<0.05), as well as the proportion of active organic carbon (soluble and particulate) in total organic carbon (combined rice and wheat straw returning > wheat straw returning > rice straw returning > control). All straw returning treatments significantly increased microbial biomass  carbon, with the highest increase (4.71 times) in the combined rice and wheat straw returning treatment. Different straw returning treatments had varying effects on carbon conversion-related enzyme activities. Specifically, combined rice and wheat straw returning had the greatest impact on β-1,4-glucosidase and β-1,4-xylosidase activities. There was a significant relationship between active organic carbon concentration and β-1,4-glucosidase and β-1,4-xylosidase activities. Overall, long-term straw returning, especially the combined rice and wheat straw returning, significantly increased soil microbial biomass, enzyme activity, and organic carbon concentration, but reduced the stability of soil organic carbon.


Key words: straw returning, rice-wheat rotation system, organic carbon grouping, enzyme activity