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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Vibrational communication facilitates cooperative foraging in a phloem-feeding insect
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Vibrational communication facilitates cooperative foraging in a phloem-feeding insect

机译:振动交流有助于在韧皮部食虫中合作觅食

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Insects are the dominante herbivores tropical forests, with a range of mechanisms exploiting plant resources. For group-living species, such mechanisms may involve communication. The Neotropical treehopper Calloconophora pinguis (Hemiptera: Membracidae) is a sap-feeding species in which groups of siblings feed on new leaves during the brief period of leaf expansion. Using an experimental approach, a process of cooperative foraging among siblings was documented, in which a few individuals in a group behave as scouts, locating a new feeding site and advertising it using plant-borne vibrational signals. Signalling leads to a period of positive feedback in which newly recruited individuals signal in concert with those already there. The food signalling system of C. pinguis is unique in its use of synchronized group displays and in the tight coordination of receiver responses with collective signals. Examples from a number of taxonomic groups show that vibrational communication can allow group-living insects to solve the challenges of feeding on plants, such as remaining in a foraging group or avoiding predation. While most research has focused on leaf-feeding species, sap-feeding species may remove just as much biomass. This study shows that cooperative vibrational communication underlies the ability of a sap-feeding species to exploit plant resources during a narrow window of availability.
机译:昆虫是热带植物的主要食草动物,具有多种利用植物资源的机制。对于集体生活的物种,此类机制可能涉及交流。新热带树蝉Call(Calloconophora pinguis)(半翅目:膜酸科)是一种汁液喂养的物种,其中的兄弟姐妹群体在叶片扩张的短暂时间内以新叶片为食。使用实验方法,对兄弟姐妹之间的合作觅食过程进行了记录,其中一组中的一些个体充当侦察员,找到了一个新的觅食地点,并使用植物传播的振动信号对其进行宣传。发信号会导致一段积极的反馈,在此期间,新招募的人员会与已经在那里的人员保持一致。 C. pinguis的食物信号系统在使用同步组显示以及将接收者的响应与集体信号紧密配合方面具有独特性。来自许多生物分类群的例子表明,振动传播可以使生活在群体中的昆虫解决以植物为食的挑战,例如留在觅食类中或避免捕食。虽然大多数研究都集中在以叶片为食的物种上,但以汁液为食的物种可能会去除尽可能多的生物量。这项研究表明,协作振动通讯是在狭小的可用性窗口内,以树液为食的物种利用植物资源的能力的基础。

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