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首页> 外文期刊>Journal of pest science >Rodent damage to rice crops is not affected by the water-saving technique, alternate wetting and drying
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Rodent damage to rice crops is not affected by the water-saving technique, alternate wetting and drying

机译:对稻田作物的啮齿动物损伤不受节水技术的影响,交替润湿和干燥

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摘要

Rice farmers in Southeast Asia are hesitant to adopt the water-saving technology, alternate wetting and drying (AWD), for fear the practice will lead to increased rodent pest activity, consequently exacerbating yield loss. We examined the effects of AWD on the population dynamics, habitat use and damage levels inflicted on rice crops by the most important rodent pest of rice in Indonesia and the Philippines, Rattus argentiventer and R. tanezumi, respectively. Rice crop damage levels were not affected by the water management scheme employed. Rodent activity in rice fields was not influenced by water level. Both species tended to use the rice paddies over bunds regardless of water level, indicating that something other than water affects their habitat use, and we argue it is likely that the perceived risk of predation is the primary factor driving habitat use. Activity levels and damage inflicted by rodent pests on rice were not correlated. AWD had no effect on breeding and population dynamics of these species. Breeding of R. argentiventer is tied to the growth stages of rice, while available resource dictates breeding by R. tanezumi. Our findings clearly indicate that rice farmers in both Indonesia and the Philippines have no cause to reject AWD based on concerns that AWD would exacerbate crop losses by rodents. Given AWD is being promoted as a climate-smart technology for rice production in Asia and Africa, we strongly recommend its adoption without concerns that it would aggravate rodent pest impacts in lowland irrigated rice cropping systems.
机译:东南亚的稻田犹豫不决,采用节水技术,替代润湿和干燥(AWD),担心实践将导致啮齿动物害虫活性增加,因此加剧产量损失。我们研究了AWD对印度尼西亚中稻米最重要的啮齿动物虫害的人口动态,栖息地使用和损害水平,分别是菲律宾最重要的啮齿动物害虫,菲律宾,rattus argentiventer和r.tanezumi。稻米作物损害水平不受所雇用的水管理计划的影响。稻田的啮齿动物活性不受水位的影响。无论水位如何,这两种物种都倾向于使用稻米饼干,表明除水以外的东西会影响他们的栖息地使用,我们可能认为感知的捕食风险是驾驶栖息地使用的主要因素。在水稻上啮齿动物害虫造成的活性水平和损伤并不相关。 AWD对这些物种的繁殖和人口动态没有影响。 R. Argentiventer的育种与米的生长阶段相关,而可用的资源决定R.Tanezumi的繁殖。我们的研究结果清楚地表明,印度尼西亚和菲律宾的稻米农民没有理由拒绝AWD,因为AWD将加剧啮齿动物的作物损失。鉴于AWD被促进为亚洲和非洲的水稻生产气候智能技术,我们强烈建议通过其通过,而不担心它将加剧低地灌溉水稻种植系统的啮齿动物害虫影响。

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