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Water-repellent plant surface structure induced by gall-forming insects for waste management

机译:形成虫的昆虫诱导的憎水植物表面结构用于废物处理

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摘要

Many animals and plants have evolved elaborate water-repellent microstructures on their surface, which often play important roles in their ecological adaptation. Here, we report a unique type of water-repellent structure on a plant surface, which develops as an insect-induced plant morphology in a social context. Some social aphids form galls on their host plant, in which they produce large amounts of hydrophobic wax. Excreted honeydew is coated by the powdery wax to form ‘honeydew balls’, which are actively disposed by soldier nymphs through an opening on their gall. These activities are enabled by a highly water-repellent inner gall surface, and we discovered that this surface is covered with dense trichomes that are not found on normal plant surfaces. The trichomes are coated by fine particles of the insect-produced wax, thereby realizing a high water repellency with a cooperative interaction between aphids and plants. The plant leaves on which the gall is formed often exhibit patchy areas with dense trichomes, representing an ectopic expression of the insect-induced plant morphology. In the pouch-shaped closed galls of a related social aphid species, by contrast, the inner surface was not covered with trichomes. Our findings provide a convincing example of how the extended phenotype of an animal, expressed in a plant, plays a pivotal role in maintaining sociality.
机译:许多动植物在其表面形成了精细的疏水微结构,这些结构通常在其生态适应中发挥重要作用。在这里,我们报告了一种独特的植物表面疏水结构,该结构在社会环境中已发展为昆虫诱导的植物形态。一些社交蚜虫在其寄主植物上形成虫gall,并在其中产生大量疏水性蜡。排泄的蜜露被粉状蜡覆盖,形成“蜜露球”,士兵若虫通过胆汁中的开口积极地将蜜瓜球丢弃。这些活动是由高度疏水的内胆表面实现的,我们发现该表面被密密的毛状体所覆盖,而这些毛状体在正常植物表面上是找不到的。毛状体被昆虫产生的蜡的细颗粒覆盖,从而通过蚜虫和植物之间的协同相互作用实现了高疏水性。在其上形成胆汁的植物叶片通常表现出斑片状区域,具有密集的毛状体,代表昆虫诱导的植物形态的异位表达。相比之下,在一个相关的社会蚜虫种的袋状闭合胆中,其内表面没有被线虫覆盖。我们的发现提供了一个令人信服的例子,说明在植物中表达的动物的扩展表型如何在维持社会地位中发挥关键作用。

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