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Response surface methodology reveals proportionality effects of plant species in conservation plantings on occurrence of generalist predatory arthropods

机译:响应面方法揭示了植物物种在遗留捕食性节肢动物的发生时植物物种的比例效应

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Multivariate geometric designs for mixture experiments and response surface methodology (RSM) were tested as a means of optimizing plant mixtures to support generalist predatory arthropods. The mixture design included 14 treatment groups, each comprised of six planters and having a proportion of 0.00, 0.17, 0.33, 0.66, or 1.00 of each plant species. The response variable was the frequency of predators trapped on sticky card traps placed in each group and replaced 2 times per week. The following plant species were used: Spring 2017: Euphorbia milii , E . heterophylla , and Phaseolus lunatus ; Summer 2017: E . milii , Fagopyrum esculentum , and Chamaecrista fasciculata ; and, Summer 2018: E . milii , F . esculentum , and Portulaca umbraticola . Predator occurrence was influenced by: 1) Linear mixture effects, which indicated that predator occurrence was driven by the amount of a single plant species in the mixture; or, 2) Nonlinear blending effects, which indicated that the plant mixture itself had emergent properties that contributed to predator occurrence. Predator abundance was highest in the Spring 2017 experiment and both linear mixture effects and nonlinear blending effects were observed. Predator occurrence decreased in subsequent experiments, which were conducted in the warmer summer months. In both Summer experiments, only linear mixture effects were observed, indicating that predator occurrence was driven by the amount of a single plant species in the test mixtures: Euphorbia milii in 2017 and Portulaca umbraticola in 2018. The results showed that not only did the species composition of a plant mixture drive predator occurrence but that proportionality of species contributed to the outcome as well. This suggests that, when formulating a plant mixture to aid in conservation biological control consideration should be given to the proportion of each plant species included in the mixture. RSM can be an important tool for achieving the goal of optimizing mixtures of plants for conservation biological control.
机译:用于混合实验和响应表面方法(RSM)的多变量几何设计被测试为优化植物混合物以支持通用捕食性节肢动物的方法。混合物设计包括14个处理基团,每个治疗组包含6种植物,其比例为0.00,0.17,0.33,0.66,或1.00个。响应变量是捕获在每个组中的粘滞卡陷阱上的捕食者的频率,并每周更换2次。使用以下植物物种:2017年春季:Euphorbia Milii,E。 heterophylla和phopololus lunatus; 2017年夏季:e。 Milii,Fagopyrum Esculentum和Chamaecrista Fasciculata;而且,2018年夏季:e。 milii,f。 Ecculentum和portulaca umbraticola。捕食者发生受影响:1)线性混合效应,表明捕食者发生在混合物中的单个植物物种的量驱动;或者,2)非线性混合效应,表明植物混合物本身具有导致捕食者发生的紧急性质。捕食者丰度在2017年春季实验中最高,并且观察到线性混合物效应和非线性混合效应。随后的实验中的捕食者发生减少,在夏季夏季进行了温暖的夏季。在夏季实验中,只观察到线性混合效应,表明捕食者发生在测试混合物中的单一植物物种的量驱动:2017年的大戟属milii和Portulaca Umbrativola。结果表明,该结果不仅是物种植物混合物的组成驱动捕食者发生,但物种的比例也有助于结果。这表明,当制定植物混合物以帮助保护生物控制考虑,应考虑混合物中包含的每种植物物种的比例。 RSM可以成为实现优化植物混合物以进行保护生物控制的重要工具。

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