气候条件对杜鹃花宽螨株内传播的影响。

E Mechant, E Pauwels, B Gobin
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引用次数: 0

摘要

广螨多食tarsonemus latus (Banks)被认为是盆栽杜鹃花的主要害虫,盆栽杜鹃花是佛兰德斯的旗舰观赏作物杜鹃花杂交品种。除了严重的经济损失外,广螨还因其对杀螨剂的抵抗力增强而令人恐惧。由于使用广谱杀螨剂的限制,比利时杜鹃花种植者只剩下三种化合物,属于两种作用模式组,并且在应用数量上受到限制,用于广泛控制螨虫:阿维菌素,米霉素和除虫菊酯。虽然杜鹃花可以用掠食性螨来控制,但该系统的高成本使得它(尚不)可以整合到标准杜鹃花害虫管理系统中。因此,利用现有的化合物进行最大限度的治疗是至关重要的。由于阿维菌素、米霉菌素和除虫菊酯为接触性杀螨剂,跨层流有限,因此喷施后只对杜鹃花茎尖上的宽螨有效。因此,化学处理的效果受白僵菌在植株上的分布和位置的影响。不幸的是,人们对宽螨在植物内的传播知之甚少,也不知道它是如何受到温度和相对湿度等气候条件的影响的。因此,我们建立了实验来验证气候条件是否对杜鹃花上宽螨的定位和迁移有影响。将染螨的杜鹃花植株置于标准生长室内,不同温度(2.5 ~ 25℃)和相对湿度(55 ~ 80%)处理。通过对杜鹃花茎尖和内叶螨的计数,确定了杜鹃花的株内传播。结果表明,温度和相对湿度对松毛虫的株内传播无显著影响。为了制定最佳喷雾条件,以最大限度地提高杀螨剂防治大面积螨虫的效果,计划对光照强度和降雨的影响进行进一步的试验。
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CLIMATE CONDITIONS AFFECTING THE WITHIN-PLANT SPREAD OF BROAD MITES ON AZALEA.

The broad mite Polyphagotarsonemus latus (Banks) is considered a major pest in potted azalea, Flanders' flagship ornamental crop of Rhododendron simsii hybrids. In addition to severe economic damage, the broad mite is dreaded for its increasing resistance to acaricides. Due to restrictions in the use of broad spectrum acaricides, Belgian azalea growers are left with only three compounds, belonging to two mode of action groups and restricted in their number of applications, for broad mite control: abamectin, milbemectin and pyrethrin. Although P. latus can be controlled with predatory mites, the high cost of this system makes it (not yet) feasible for integration into standard azalea pest management systems. Hence, a maximum efficacy of treatments with available compounds is essential. Because abamectin, milbemectin and pyrethrin are contact acaricides with limited trans laminar flow, only broad mites located on shoot tips of azalea plants will be controlled after spraying. Consequently, the efficacy of chemical treatments is influenced by the location and spread of P. latus on the plant. Unfortunately, little is known on broad mites' within-plant spread or how it is affected by climatic conditions like temperature and relative humidity. Therefore, experiments were set up to verify whether climate conditions have an effect on the location and migration of broad mites on azalea. Broad mite infected azalea plants were placed in standard growth chambers under different temperature (T:2.5-25°C) and relative humidity (RH:55-80%) treatments. Within-plant spread was determined by counting mites on the shoot tips and inner leaves of azalea plants. Results indicate that temperature and relative humidity have no significant effect on the within-plant spread of P. latus. To formulate recommendations for optimal spray conditions to maximize the efficacy of broad mite control with acaricides, further experiments on the effect of light intensity and rain are scheduled.

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