Wang Han, Tang Jian-jun, Xie Jian, Chen Xin
Institute of Agroecology and Eco-engineering, College of Life Sciences, Zhejiang University, Hangzhou 310058, China.
Ying Yong Sheng Tai Xue Bao. 2007 May;18(5):1132-6.
Establishing a species-diversified cropping system to control crop diseases, insect pests and weeds is an important approach to sustainable agricultural development. This paper reviewed the researches on paddy field species-diversified cropping systems at home and abroad, and discussed the controlling effects and mechanisms of multiple species coexistence on rice diseases, pests and weeds control. The multiple species coexistence models such as rice-fish, rice-duck, rice-azolla-fish and rice-azolla-duck had effective controlling effects on Thanatephorus cucumeris (Frank) Donk, Nilaparata lugens Stal, Chaphalocrocis medinalis Gueneeand, and weeds. Other models like intercropping rice with Zizania caduciflora L. and with other wetland crops also had effective effects in controlling the occurrence and spread of Pyricularia grisea. It was suggested that further studies should be strengthened from the viewpoints of crop culture, molecular biology, and chemical ecolo-
建立物种多样化的种植系统以控制作物病虫害和杂草是可持续农业发展的重要途径。本文综述了国内外稻田物种多样化种植系统的研究,并探讨了多物种共存对水稻病虫害和杂草控制的作用效果及机制。稻鱼、稻鸭、稻萍鱼和稻萍鸭等多物种共存模式对稻纹枯病菌、褐飞虱、稻纵卷叶螟和杂草有有效的控制作用。其他如水稻与茭白及其他湿地作物间作的模式在控制稻瘟病的发生和传播方面也有显著效果。建议从作物栽培、分子生物学和化学生态学等角度加强进一步研究。