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昆虫诱导的新型植物表型,可维持封闭系统中的社会生活。

An insect-induced novel plant phenotype for sustaining social life in a closed system.

机构信息

National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Japan.

出版信息

Nat Commun. 2012;3:1187. doi: 10.1038/ncomms2187.

Abstract

Foraging, defense and waste disposal are essential for sustaining social insect colonies. Hence, their nest generally has an open structure, wherein specialized castes called workers and soldiers perform these tasks. However, some social aphids form completely closed galls, wherein hundreds to thousands of insects grow and reproduce for several months in isolation. Why these social aphids are not drowned by accumulated honeydew has been an enigma. Here we report a sophisticated biological solution to the waste problem in the closed system: the gall inner surface is specialized for absorbing water, whereby honeydew is promptly removed via the plant vascular system. The water-absorbing closed galls have evolved at least twice independently among social aphids. The plant-mediated waste removal, which entails insect's manipulation of plant morphogenesis and physiology, comprises a previously unknown mechanism of nest cleaning, which can be regarded as 'extended phenotype' and 'indirect social behavior' of the social aphids.

摘要

觅食、防御和废物处理对于维持群居昆虫的种群至关重要。因此,它们的巢穴通常具有开放的结构,其中专门的职蚁,如工蚁和兵蚁,执行这些任务。然而,一些群居蚜虫形成完全封闭的虫瘿,其中数百到数千只昆虫在隔离状态下生长和繁殖数月。为什么这些群居蚜虫不会被积累的蜜露淹死一直是个谜。在这里,我们报告了一个复杂的生物解决方案来解决封闭系统中的废物问题:虫瘿内表面专门用于吸水,从而通过植物维管束系统迅速清除蜜露。具有吸水功能的封闭虫瘿在群居蚜虫中至少独立进化了两次。这种由植物介导的废物清除涉及昆虫对植物形态发生和生理学的操纵,它包含了一个以前未知的巢穴清洁机制,可以被视为群居蚜虫的“延伸表型”和“间接社会行为”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3afa/3514493/44f57a0e68b9/ncomms2187-f1.jpg

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