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Chinese Journal of Applied Ecology ›› 2017, Vol. 28 ›› Issue (1): 299-307.doi: 10.13287/j.1001-9332.201701.040

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Effects of fish on field resource utilization and rice growth in rice-fish coculture

ZHANG Jian1, HU Liang-liang1, REN Wei-zheng1, GUO Liang1, WU Min-fang2, TANG Jian-jun1, CHEN Xin1*   

  1. 1College of Life Sciences, Zhejiang University, Hangzhou 310058, China
    2Qingtian Bureau of Agriculture, Qingtian 323900, Zhejiang, China
  • Received:2016-05-24 Revised:2016-11-10 Published:2017-01-18
  • Contact: *E-mail:chen-tang@zju.edu.cn
  • Supported by:
    This work was supported by the State Key Research and Development Program (2016YFD0300900), and the Science and Technology Program of Zhejiang Province (2015C32119)

Abstract: Rice field can provide habitat for fish and other aquatic animals. Rice-fish coculture can increase rice yield and simultaneously reduce the use of chemicals through reducing rice pest occurrence and nutrient complementary use. However, how fish uses food sources (e.g. phytoplankton, weeds, duckweed, macro-algal and snail) from rice field, and whether the nutrients releasing from those food sources due to fish transforming can improve rice growth are still unknown. Here, we conducted two field experiments to address these questions. One was to investigate the pattern of fish activity in the field using the method of video recording. The other was to examine the utilization of field resources by fish using stable isotope technology. Rice growth and rice yield were also exa-mined. Results showed that fish tended to be more active and significantly expanded the activity range in the rice-fish coculture compared to fish monoculture (fish not living together with rice plants). The contributions of 3 potential aquatic organisms (duckweed, phytoplankton and snail) to fish dietary were 22.7%, 34.8% and 30.0% respectively under rice-fish coculture without feed. Under the treatment with feed, however, the contributions of these 3 aquatic organisms to the fish die-tary were 8.9%, 5.9% and 1.6% respectively. The feed contribution was 71.0%. Rice-fish coculture significantly increased the nitrogen concentration in rice leaves, prolonged tillering stage by 10-12 days and increased rice spike rate and yield. The results suggested that raising fish in paddy field may transform the nutrients contained in field resources to bioavailable for rice plants through fish feeding activity, which can improve rice growth and rice yield.