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Synergistic effect of an ultraviolet feeding cue for an avian repellent and protection of agricultural crops

机译:紫外线饲喂线索对鸟类驱避剂的协同作用及对农作物的保护

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摘要

Application strategies for avian repellents are needed to maintain efficacious repellent concentrations throughout the period of needed crop protection. We investigated the repellency of an ultraviolet (UV) feeding cue in the absence of postingestive consequences, the combination of the UV feeding cue and an UV-absorbent, postingestive repellent (i.e., a repellent that causes negative postingestive consequences), and a non-UV feeding cue combined with the IN-absorbent, postingestive repellent in red-winged blackbirds (Agelaius phoeniceus). In the absence of negative postingestive consequences, 0.2% of the UV feeding cue (wt/wt) was not aversive relative to untreated food (i.e., baseline preference test; P=0.1732). Relative to the repellency of food treated only with the anthraquinone-based repellent, synergistic repellency (i.e., 45-115% increase) was observed when 0.2% of the UV feeding cue was combined with 0.02% or 0.035% anthraquinone (wt/wt). In contrast, <10% repellency was observed for 0.2% of a non-UV feeding cue (red #40 aluminum lake dispersion) paired with 0.02% anthraquinone. Aversion performance was therefore not attributed to characteristics of either conditioned or unconditioned stimuli but their combinations, and enhanced repellency of anthraquinone plus the UV-absorbent cue was attributed to UV wavelengths. Thus, the addition of an UV feeding cue can enhance avian repellency at repellent concentrations realized from previous field applications on agricultural crops (e.g., <= 1000 ppm anthraquinone)
机译:需要使用鸟类驱避剂的策略来在整个作物保护期间保持有效的驱避剂浓度。我们调查了在没有假性后果的情况下紫外线(UV)喂食线索的拒斥性,紫外线喂食线索与紫外线吸收剂,假性忌避剂(即造成负面的假性消灭后果的忌避剂)的组合以及非紫外线饲喂线索与红翅黑鸟(Agelaius phoeniceus)的IN吸收剂,张贴性驱避剂相结合。在没有消极的不良后果的情况下,相对于未经处理的食物,没有0.2%的紫外线进食提示(wt / wt)令人厌恶(即,基线偏爱测试; P = 0.1732)。相对于仅用蒽醌类驱避剂处理过的食物,当将0.2%的紫外线饲喂线索与0.02%或0.035%的蒽醌(wt / wt)结合使用时,观察到协同驱避性(即增加了45-115%)。 。相反,对于0.2%的非UV饲喂线索(红色#40铝色淀分散体)与0.02%蒽醌配对,观察到了小于10%的排斥性。因此,厌恶性能不是归因于条件刺激或非条件刺激的特征,而是它们的组合,蒽醌的排斥性增强以及吸收紫外线的线索归因于紫外线波长。因此,添加紫外线饲喂线索可以提高先前在农作物上的田间施用所达到的驱虫剂浓度(例如,≤1000 ppm蒽醌)的驱虫性。

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