Knecht Zachary A, Silbering Ana F, Ni Lina, Klein Mason, Budelli Gonzalo, Bell Rati, Abuin Liliane, Ferrer Anggie J, Samuel Aravinthan Dt, Benton Richard, Garrity Paul A
Department of Biology, National Center for Behavioral Genomics and Volen Center for Complex Systems, Brandeis University, Waltham, United States.
Center for Integrative Genomics, Faculty of Biology and Medicine, University of Lausanne, Lausanne, Switzerland.
Elife. 2016 Sep 22;5:e17879. doi: 10.7554/eLife.17879.
Ionotropic Receptors (IRs) are a large subfamily of variant ionotropic glutamate receptors present across Protostomia. While these receptors are most extensively studied for their roles in chemosensory detection, recent work has implicated two family members, IR21a and IR25a, in thermosensation in . Here we characterize one of the most evolutionarily deeply conserved receptors, IR93a, and show that it is co-expressed and functions with IR21a and IR25a to mediate physiological and behavioral responses to cool temperatures. IR93a is also co-expressed with IR25a and a distinct receptor, IR40a, in a discrete population of sensory neurons in the sacculus, a multi-chambered pocket within the antenna. We demonstrate that this combination of receptors is required for neuronal responses to dry air and behavioral discrimination of humidity differences. Our results identify IR93a as a common component of molecularly and cellularly distinct IR pathways important for thermosensation and hygrosensation in insects.
离子型受体(IRs)是原口动物中存在的一类变异离子型谷氨酸受体的大亚家族。虽然这些受体在化学感觉检测中的作用得到了最广泛的研究,但最近的研究表明,该家族的两个成员IR21a和IR25a参与了[具体生物]的温度感觉。在这里,我们对进化上最保守的受体之一IR93a进行了表征,并表明它与IR21a和IR25a共同表达并发挥作用,以介导对低温的生理和行为反应。IR93a还与IR25a以及一种不同的受体IR40a在触角内一个多腔袋状结构——球囊的离散感觉神经元群体中共同表达。我们证明,这种受体组合是神经元对干燥空气做出反应以及对湿度差异进行行为辨别所必需的。我们的研究结果表明,IR93a是昆虫中对温度感觉和湿度感觉至关重要的分子和细胞上不同的IR途径的共同组成部分。