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Prey-stage preference in phytoseiid mites.

机译:拟除螨的猎物阶段偏爱。

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Knowledge of how individual organisms behave in their environment can provide a greater understanding of population dynamics. In a predator-prey system, the choices made by predators when foraging for prey are important aspects of behavior. Particularly in the case of a stage-structured prey population, how the predator selects prey stages once a prey patch has been located can have implications for prey population growth, predator development and fecundity, and predator-prey system dynamics.; Predaceous mites of the family Phytoseiidae are important biological control agents of Tetranychus spider mites in agricultural settings worldwide. Phytoseiid species range from specialists that require Tetranychus spider mite prey in order to develop and reproduce to generalist omnivores. In studies with 13 phytoseiid species, specialized species tended to prefer T. urticae eggs as prey or have no prey-stage preference while more generalist species tended to have no prey-stage preference or prey more often on mobile immatures. Further testing with a subset of these species suggested variability among species with regard to genetic and environmental influences on prey-stage preference. The specialist Phytoseiulus persimilis also preferred to forage and oviposit in patches containing egg-biased stage distributions rather than in adjacent mobile immature-biased patches. No benefits to offspring developing in either type of patch were found in terms of developmental time or subsequent adult fecundity. However, the results of both manipulative experiments and nonlinear population models indicated potential benefits of egg-biased predation in terms of current adult female fecundity, a less severe impact of predation on the prey population, and an increased number of predator descendents during the predator-prey interaction. Considering both subjective factors and discriminant analyses, prey-stage preference performed well as an indicator for the ecological classification of phytoseiid species. The classifications of four phytoseiid species occurring on apple in central and eastern Oregon, USA, were evaluated accordingly.
机译:了解单个生物在其环境中的行为方式可以更好地了解种群动态。在捕食者-猎物系统中,捕食者在觅食猎物时做出的选择是行为的重要方面。特别是在具有阶段结构的猎物种群的情况下,一旦定位了猎物斑块,捕食者如何选择猎物阶段可能会对猎物种群的增长,捕食者的发育和繁殖力以及捕食者-猎物系统动力学产生影响。在世界范围内的农业环境中,茄科的前螨是 Tetranychus 蜘蛛螨的重要生物防治剂。杀植物的种类包括需要 Tetranychus 蜘蛛螨猎物以便发展和繁殖为杂食杂草的专家。在对13种植物甾体物种的研究中,专业物种倾向于使用T 。荨麻疹卵作为猎物,或者没有猎物阶段的偏爱,而更多的通配物种倾向于没有猎物阶段的偏爱,或者在流动的未成熟幼体上的猎物更多。对这些物种的子集进行进一步测试表明,物种之间在遗传和环境对猎物阶段偏好的影响方面存在差异。专家 Phytoseiulus persimilis 还更喜欢在包含卵偏态阶段分布的斑块中觅食和产卵,而不是在相邻的未成熟偏斜移动斑块中觅食和产卵。在发育时间或随后的成年繁殖力方面,都没有发现对任何一种贴片中的后代都有益处。但是,操纵实验和非线性种群模型的结果均表明,以当前成年雌性繁殖力而言,偏蛋的捕食具有潜在的好处,捕食对猎物种群的影响较小,在捕食者期间,捕食者后代的数量增加猎物互动。考虑到主观因素和判别分析,猎物阶段的偏好表现良好,可作为植物类植物生态学分类的指标。相应地评估了美国俄勒冈州中部和东部的苹果上出现的四种植物杀螨物种的分类。

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