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首页> 外文期刊>Australian Journal of Entomology >Geostatistical analysis of the attractive distance of two different sizes of yellow sticky traps for greenhouse whitefly, Trialeurodes vaporariorum (Westwood) (Homoptera: Aleyrodidae), in cherry tomato greenhouses
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Geostatistical analysis of the attractive distance of two different sizes of yellow sticky traps for greenhouse whitefly, Trialeurodes vaporariorum (Westwood) (Homoptera: Aleyrodidae), in cherry tomato greenhouses

机译:樱桃番茄温室中两个不同大小的黄色粘性陷阱对温室粉虱Trialeurodes vaporariorum(Westwood)(Homoptera:Aleyrodidae)的吸引距离的地统计分析

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摘要

Variogram analysis was used to estimate and compare the attractive distances of two different sizes of yellow sticky traps (small trap: 9.6?×?8.0?cm; large trap: 9.6?×?16?cm) for sampling greenhouse whitefly, Trialeurodes vaporariorum (Westwood), adults in four commercial cherry tomato greenhouses, during 2002–2003. The patch size of T. vaporariorum immatures between plants was also estimated using visual counts. Within each greenhouse, 64 permanent sampling stations were established on an 8?×?8 grid, with one yellow sticky trap or one tomato plant per location. Standardised exponential and Gaussian variogram models were fitted to the empirical variograms developed from the data collected by each sampling method. All the variograms reached the sill indicating the presence of spatial dependence among the spatial data obtained by the two sampling methods. For T. vaporariorum adults on sticky traps the range of variogram (a measure of attractive distance) was not considerably different between the two trap sizes: 15.40 and 15.95?m for the large and small traps, respectively. This result indicated that the attractive distances of the two different yellow sticky traps were very similar. The ranges of the variograms for the visual count of immatures on plants were always less (7.49–10.00?m) than those for adults, indicating that the attractive distance of the traps for T. vaporariorum adults extends beyond the patch size for immatures on cherry tomato plants. These data have implications for developing sampling plans for the management of T. vaporariorum in tomato greenhouses.
机译:变异函数分析用于估计和比较两个不同大小的黄色粘性诱集装置(小诱集装置:9.6?×?8.0?cm;大诱集装置:9.6?×?16?cm)的吸引距离,用于取样温室粉虱,Trialeurodes vaporariorum( Westwood),在2002年至2003年期间,在四个商业樱桃番茄温室中的成虫。还使用视觉计数来估计植物之间未成熟的T. vaporariorum斑块大小。在每个温室内,在8××8的网格上建立了64个永久性采样站,每个位置有一个黄色的粘性陷阱或一个番茄植株。将标准化的指数和高斯变异函数模型拟合到根据每种采样方法收集的数据得出的经验变异函数。所有的变异函数均达到底线,表明在通过两种采样方法获得的空间数据中存在空间依赖性。对于粘性诱捕器上的气旋毛虫,成虫的分布范围(吸引距离的度量)在两个诱捕器尺寸之间没有显着差异:分别为大型诱捕器和小型诱捕器,分别为15.40和15.95?m。该结果表明,两个不同的黄色粘性阱的吸引距离非常相似。植物未成熟物的视觉计数变异图的范围总是小于成虫的变异数(7.49–10.00?m),这表明汽发T.vaporariorum成虫的诱集距离超出了樱桃未成熟物的斑块大小。番茄植物。这些数据对制定用于番茄大棚蒸腾丝线虫的采样计划具有影响。

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