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Can the co-cultivation of rice and fish help sustain rice production?

机译:稻米和鱼类的共同养殖能否帮助维持稻米生产?

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摘要

Because rice feeds half of the world’s population, a secure global food supply depends on sustainable rice production. Here we test whether the co-cultivation of rice and fish into one “rice-fish system” (RFS; fish refers to aquatic animals in this article) could help sustain rice production. We examined intensive and traditional RFSs that have been widely practiced in China. We found that rice yields did not decrease when fish yield was below a threshold value in each intensive RFS. Below the thresholds, moreover, fish yields in intensive RFSs can be substantially higher than those in traditional RFS without reducing rice yield. Relative to rice monoculture, the use of fertilizer-nitrogen and pesticides decreased, and the farmers’ net income increased in RFSs. The results suggest that RFSs can help sustain rice production, and suggest that development of co-culture technologies (i.e. proper field configuration for fish and rice) is necessary to achieve the sustainability.
机译:由于大米养活了世界一半的人口,因此全球粮食的安全供应取决于可持续的大米生产。在这里,我们测试将稻米和鱼类共养成一种“稻米-鱼类系统”(RFS;鱼在本文中指的是水生动物)是否有助于维持稻米的生产。我们研究了在中国广泛使用的密集和传统的RFS。我们发现,在每个集约化RFS中,当鱼的产量低于阈值时,水稻的产量不会降低。此外,在不超过阈值的情况下,集约化RFS中的鱼类产量可以比传统RFS中的鱼类产量高得多,而不会降低稻米的产量。相对于水稻单作,减少肥料中氮肥和杀虫剂的使用,农民的纯收入增加。结果表明,RFS可以帮助维持稻米的生产,并建议共养技术的发展(即适当的鱼和稻田配置)对于实现可持续性是必要的。

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