Mi Tingwei, Sheng Chengwang, Lee Cassidy Kylene, Nguyen Peter, Zhang Yali V
Monell Chemical Senses Center, Philadelphia, PA 19104, USA.
Department of Pesticide Science, Anhui Agricultural University, Hefei 230036, China.
Life (Basel). 2025 Jan 16;15(1):110. doi: 10.3390/life15010110.
Chemosensation and mechanosensation are vital to insects' survival and behavior, shaping critical physiological processes such as feeding, metabolism, mating, and reproduction. During feeding, insects rely on diverse chemosensory and mechanosensory receptors to distinguish between nutritious and harmful substances, enabling them to select suitable food sources while avoiding toxins. These receptors are distributed across various body parts, allowing insects to detect environmental cues about food quality and adjust their behaviors accordingly. A deeper understanding of insect sensory physiology, especially during feeding, not only enhances our knowledge of insect biology but also offers significant opportunities for practical applications. This review highlights recent advancements in research on feeding-related sensory receptors, covering a wide range of insect species, from the model organism to agricultural and human pests. Additionally, this review examines the potential of targeting insect sensory receptors for precision pest control. Disrupting behaviors such as feeding and reproduction emerges as a promising strategy for pest management. By interfering with these essential behaviors, we can effectively control pest populations while minimizing environmental impacts and promoting ecological balance.
化学感应和机械感应对昆虫的生存和行为至关重要,塑造了诸如进食、新陈代谢、交配和繁殖等关键生理过程。在进食过程中,昆虫依靠多种化学感应和机械感应受体来区分营养物质和有害物质,使它们能够选择合适的食物来源,同时避免毒素。这些受体分布在身体的各个部位,使昆虫能够检测有关食物质量的环境线索,并相应地调整它们的行为。深入了解昆虫的感觉生理学,尤其是在进食过程中的感觉生理学,不仅能增进我们对昆虫生物学的认识,还为实际应用提供了重要机会。这篇综述突出了与进食相关的感觉受体研究的最新进展,涵盖了从模式生物到农业害虫和人类害虫等广泛的昆虫物种。此外,这篇综述还探讨了以昆虫感觉受体为靶点进行精准害虫防治的潜力。扰乱进食和繁殖等行为成为一种有前景的害虫管理策略。通过干扰这些基本行为,我们可以在尽量减少环境影响和促进生态平衡的同时,有效控制害虫种群。