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首页> 外文期刊>Plant signaling & behavior >Boomeranging in structural defense: phytophagous insect uses cycad trichomes to defend against entomophagy.
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Boomeranging in structural defense: phytophagous insect uses cycad trichomes to defend against entomophagy.

机译:Boomeranging在结构防御中:食虫性昆虫使用苏铁的毛状体来防御昆虫。

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摘要

Plant defensive behaviors that resist arthropod herbivory include trichome-mediated defenses, and variation in plant trichome morphology and abundance provides examples of the mechanistic complexities of insect-plant interactions. Trichomes were removed from Cycas revoluta cataphylls on the island of Guam to reveal Aulacaspis yasumatsui scale infestation, and predation of the newly exposed insects by pre-existing Rhyzobius lophanthae beetles commenced within one day. The quotient of predated/total scale insects was 0.5 by day 4 and stabilized at that found on adjacent glabrous leaves in about one week. The trichome phenotype covering the C. revoluta cataphyll complex offers the invasive A. yasumatsui armored scale effectual enemy-free space in this system. This pest and predator share no known evolutionary history with C. revoluta, therefore, the adaptive significance of this plant behavior in natural habitat is not yet known.
机译:抵抗节肢动物食草的植物防御行为包括毛线虫介导的防御,植物毛线虫形态和丰度的变化提供了昆虫-植物相互作用的机械复杂性的例子。从关岛的苏铁属的叶锈菌中除去了毛果,发现了天牛幼规模的侵扰,并在一天之内开始了通过已有的根lo金龟甲对新暴露的昆虫的捕食。到第4天,捕食性/总规模昆虫的商数为0.5,并在大约一周内稳定在相邻无毛叶片上的商数。覆盖C. revoluta cataphyll复合体的毛状体表型在该系统中提供了侵入性的A. yasumatsui装甲规模有效无敌空间。这种有害生物和捕食者与雷氏梭菌没有共同的进化史,因此,该植物行为在自然栖息地中的适应性意义尚不明确。

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