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Insect endosymbionts: manipulators of insect herbivore trophic interactions?

机译:昆虫共生共生体:昆虫食草动物营养相互作用的操纵者?

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摘要

Throughout their evolutionary history, insects have formed multiple relationships with bacteria. Although many of these bacteria are pathogenic, with deleterious effects on the fitness of infected insects, there are also numerous examples of symbiotic bacteria that are harmless or even beneficial to their insect host. Symbiotic bacteria that form obligate or facultative associations with insects and that are located intracellularly in the host insect are known as endosymbionts. Endosymbiosis can be a strong driving force for evolution when the acquisition and maintenance of a microorganism by the insect host results in the formation of novel structures or changes in physiology and metabolism. The complex evolutionary dynamics of vertically transmitted symbiotic bacteria have led to distinctive symbiont genome characteristics that have profound effects on the phenotype of the host insect. Symbiotic bacteria are key players in insect–plant interactions influencing many aspects of insect ecology and playing a key role in shaping the diversification of many insect groups. In this review, we discuss the role of endosymbionts in manipulating insect herbivore trophic interactions focussing on their impact on plant utilisation patterns and parasitoid biology.
机译:在整个进化史中,昆虫与细菌形成了多种关系。尽管这些细菌中有许多是致病性的,会对被感染昆虫的适应性产生有害影响,但也有许多共生细菌实例,它们对昆虫宿主无害甚至有益。与昆虫形成专性或兼性联系并位于宿主昆虫细胞内的共生细菌被称为共生菌。当昆虫宿主对微生物的获取和维持导致新结构的形成或生理学和新陈代谢的变化时,内共生可能是进化的强大动力。垂直传播的共生细菌的复杂进化动力学已导致独特的共生基因组特征,对宿主昆虫的表型产生深远的影响。共生细菌是影响昆虫生态学许多方面的昆虫与植物相互作用的关键参与者,并且在形成许多昆虫群体的多样化中起着关键作用。在这篇综述中,我们讨论了内共生菌在操纵昆虫食草动物营养相互作用中的作用,重点在于它们对植物利用模式和寄生性生物学的影响。

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