Treidel Lisa A, Deem Kevin D, Salcedo Mary K, Dickinson Michael H, Bruce Heather S, Darveau Charles-A, Dickerson Bradley H, Ellers Olaf, Glass Jordan R, Gordon Caleb M, Harrison Jon F, Hedrick Tyson L, Johnson Meredith G, Lebenzon Jacqueline E, Marden James H, Niitepõld Kristjan, Sane Sanjay P, Sponberg Simon, Talal Stav, Williams Caroline M, Wold Ethan S
School of Biological Sciences, University of Nebraska, Lincoln, Lincoln NE, 68588, USA.
Department of Biology, University of Rochester, Rochester NY, 14627, USA.
Integr Comp Biol. 2024 Jul 9;64(2):533-55. doi: 10.1093/icb/icae106.
The evolution of flight in an early winged insect ancestral lineage is recognized as a key adaptation explaining the unparalleled success and diversification of insects. Subsequent transitions and modifications to flight machinery, including secondary reductions and losses, also play a central role in shaping the impacts of insects on broadscale geographic and ecological processes and patterns in the present and future. Given the importance of insect flight, there has been a centuries-long history of research and debate on the evolutionary origins and biological mechanisms of flight. Here, we revisit this history from an interdisciplinary perspective, discussing recent discoveries regarding the developmental origins, physiology, biomechanics, and neurobiology and sensory control of flight in a diverse set of insect models. We also identify major outstanding questions yet to be addressed and provide recommendations for overcoming current methodological challenges faced when studying insect flight, which will allow the field to continue to move forward in new and exciting directions. By integrating mechanistic work into ecological and evolutionary contexts, we hope that this synthesis promotes and stimulates new interdisciplinary research efforts necessary to close the many existing gaps about the causes and consequences of insect flight evolution.
早期有翅昆虫祖先谱系中飞行的进化被认为是一种关键的适应性特征,它解释了昆虫无与伦比的成功和多样性。随后对飞行机制的转变和修改,包括次生减少和丧失,在塑造昆虫对当前和未来广泛地理和生态过程及模式的影响方面也起着核心作用。鉴于昆虫飞行的重要性,关于飞行的进化起源和生物学机制的研究和争论已有数百年历史。在这里,我们从跨学科的角度重新审视这段历史,讨论在各种昆虫模型中有关飞行的发育起源、生理学、生物力学以及神经生物学和感官控制的最新发现。我们还确定了尚未解决的主要突出问题,并为克服研究昆虫飞行时面临的当前方法挑战提供建议,这将使该领域能够继续朝着新的、令人兴奋的方向发展。通过将机制性研究工作融入生态和进化背景中,我们希望这种综合能够促进并激发新的跨学科研究努力,以填补关于昆虫飞行进化的原因和后果的许多现有空白。