群居昆虫的防御:多样性、劳动分工和进化。

IF 15 1区 农林科学 Q1 ENTOMOLOGY
Patrick Abbot
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引用次数: 10

摘要

所有群居昆虫都保护自己的种群免受捕食者、寄生虫和病原体的侵害。在奥斯特和威尔逊的经典著作中,他们提出了一个关于群居昆虫防御的关键悖论:既然防御的普遍必要性,那么为什么机制会有如此多的多样性呢?生态因素无疑是重要的:捕食和篡夺对群居昆虫施加了强烈的选择,而群体的积极防御是所有群居昆虫的普遍特征。对以防御为主要职责的不育工蚁种姓的各种昆虫群体的描述,扩大了昆虫社会进化的范围,特别是在种姓和行为方面。防御是我们开始组织和理解昆虫社会性的一个中心轴。随着蜜蜂等群居昆虫模型的建立,人们对群居昆虫防御机制的内分泌、神经和基因调控机制有了新的发现。形态和行为防御特征的潜在机制可能在不同的群体中共享,这为识别起作用的保守机制和新机制提供了机会。新兴主题突出的背景依赖和相互作用的因素,调节防御在社会昆虫。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Defense in Social Insects: Diversity, Division of Labor, and Evolution.

All social insects defend their colony from predators, parasites, and pathogens. In Oster and Wilson's classic work, they posed one of the key paradoxes about defense in social insects: Given the universal necessity of defense, why then is there so much diversity in mechanisms? Ecological factors undoubtedly are important: Predation and usurpation have imposed strong selection on eusocial insects, and active defense by colonies is a ubiquitous feature of all social insects. The description of diverse insect groups with castes of sterile workers whose main duty is defense has broadened the purview of social evolution in insects, in particular with respect to caste and behavior. Defense is one of the central axes along which we can begin to organize and understand sociality in insects. With the establishment of social insect models such as the honey bee, new discoveries are emerging regarding the endocrine, neural, and gene regulatory mechanisms underlying defense in social insects. The mechanisms underlying morphological and behavioral defense traits may be shared across diverse groups, providing opportunities for identifying both conserved and novel mechanisms at work. Emerging themes highlight the context dependency of and interaction between factors that regulate defense in social insects.

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来源期刊
Annual review of entomology
Annual review of entomology 生物-昆虫学
CiteScore
45.70
自引率
0.80%
发文量
46
期刊介绍: The Annual Review of Entomology, a publication dating back to 1956, offers comprehensive reviews of significant developments in the field of entomology.The scope of coverage spans various areas, including:biochemistry and physiology, morphology and development, behavior and neuroscience, ecology, agricultural entomology and pest management, biological control, forest entomology, acarines and other arthropods, medical and veterinary entomology, pathology, vectors of plant disease, genetics, genomics, and systematics, evolution, and biogeography.
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