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首页> 外文期刊>Korean Journal of Horticultural Science & Technology >Evaluation and Comparison of Effects of Air and Tomato Leaf Temperatures on the Population Dynamics of Greenhouse Whitefly (Trialeurodes vaporariorum) in Cherry Tomato Grown in Greenhouses
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Evaluation and Comparison of Effects of Air and Tomato Leaf Temperatures on the Population Dynamics of Greenhouse Whitefly (Trialeurodes vaporariorum) in Cherry Tomato Grown in Greenhouses

机译:空气和番茄叶片温度对温室樱桃番茄中温室粉虱(Trialeurodes vaporariorum)种群动态影响的评估和比较

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Population dynamics of greenhouse whitefly, Trialeurodes vaporariorum (Westwood), were modeled and simulated to compare the temperature effects of air and tomato leaf inside greenhouse using DYMEX model simulator (pre-programed module based simulationprogram developed by CSIRG, Australia). The DYMEX model simulator consisted of temperature dependent development and oviposition modules. The normalized cumulative frequency distributions of the developmental period for immature and oviposition frequency rate and survival rate for adult of greenhouse wliitefly were fitted to two-parameter WeibuU function. Leaf temperature on reversed side of cherry tomato leafs (Lycopersicon esculentum cv. Koko) was monitored according to three tomato plant positions (top, > 1.6 m above the ground level; middle, 0.9 - 1.2 m; bottom, 0.3 - 0.5 m) using an infrared temperature gun. Air temperature was monitored at same three positions using a Hobo self-contained temperature logger. The leaf temperatures from three plantpositions were described as a function of the air temperatures with 3-parameter exponential and sigmoidal models. Data sets of observed air temperature and predicted leaf temperatures were prepared, and incorporated into the DYMEX simulator to compare the effects of air and leaf temperature on population dynamics of greenhouse whitefly. The number of greenhouse whitefly immatures was counted by visual inspection in three tomato plant positions to verity the performance of DYMEX simulation in cherry tomato greenhouse where air and leaf temperatures were monitored. The egg stage of greenhouse whitefly was not counted due to its small size. A significant positive correlation between the observed and the predicted numbers of immature and adults were foundwhen the leaf temperatures were incorporated into DYMEX simulation, but no significant correlation was observed with the air temperatures. This study demonstrated that the population dynamics of greenhouse whitefly was affected greatly by the leaf temperatures, rather than air temperatures, and thus the leaf surface temperature should be considered for management of greenhouse whitefly in cherry tomato grown in greenhouses.
机译:使用DYMEX模型模拟器(澳大利亚CSIRG开发的基于预编程模块的模拟程序)对温室粉虱Trialeurodes vaporariorum(Westwood)的种群动态进行了建模和模拟,以比较温室中空气和番茄叶片的温度效应。 DYMEX模型模拟器由温度相关的显影和产卵模块组成。拟合的两参数WeibuU函数拟合了未成年和产卵频率和成年成虫成虫的成活率的归一化累积频率分布。根据三个番茄植株位置(顶部,高于地面1.6 m;中间,0.9-1.2 m;底部,0.3-0.5 m),对樱桃番茄叶片(Lycopersicon esculentum cv。Koko)反面的叶片温度进行监测红外测温枪。使用Hobo独立式温度记录仪在相同的三个位置监测空气温度。用3参数指数模型和S型模型描述了三个种植位置的叶片温度与气温的关系。准备了观测到的气温和预测叶温的数据集,并将其合并到DYMEX模拟器中,以比较空气和叶温对温室粉虱种群动态的影响。通过目视检查在三个番茄植株位置上计数温室大棚粉虱未成熟的数量,以验证DYMEX模拟在樱桃番茄大棚中的性能,该樱桃大棚监测了空气和叶片的温度。温室粉虱的卵期较小,因此未计入卵期。当叶片温度被纳入DYMEX模拟中时,发现的与未成熟和成年的数量之间存在显着的正相关,而与气温没有显着的相关。这项研究表明,温室粉虱的种群动态受叶温度的影响很大,而不是受空气温度的影响,因此,应考虑使用叶片表面温度来管理温室中种植的樱桃番茄中的温室粉虱。

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