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首页> 外文期刊>The Journal of Experimental Biology >Chemosensory tuning to a host recognition cue in the facultative specialist larvae of the moth Manduca sexta
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Chemosensory tuning to a host recognition cue in the facultative specialist larvae of the moth Manduca sexta

机译:化学感官调谐到蛾类满天蛾的兼性幼虫中的宿主识别提示

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Larvae of Manduca sexta are facultative specialists on plants in the family Solanaceae. Larvae reared on solanaceous foliage develop a strong preference for their host; otherwise, they remain polyphagous. The host-specific recognition cue in potato foliage for Manduca larvae is the steroidal glycoside, indioside D. Two pairs of galeal taste sensilla, the lateral and medial sensilla styloconica, are both necessary and sufficient for the feeding preferences of host-restricted larvae. We conducted electrophysiological tip recordings from sensilla of solanaceous or wheat germ diet-reared larvae. For each animal, recordings of the responses to indioside D, glucose, tomatine and KCl were compared. All responses included both phasic and tonic portions. The sensilla styloconica of solanaceous-reared larvae were tuned to indioside D, defined as maintaining a high sensitivity to indioside D, while showing lower sensitivity to other plant compounds. Half of the sensillar neurons of solanaceous-reared larvae were 'tuned' to indioside D, whereas those of wheat germ diet-reared larvae were not. The different responses between the two types of animals were a result of changes of individual receptor cells' responses in the sensilla. Feeding on solanaceous foliage therefore appears to result in a modification of the physiological responses of individual taste receptor cells that causes them to be tuned to the host-recognition cue indioside D. We propose that this tuning is the basis for the host-restricted larvae's strong behavioral preferences for solanaceous foliage.
机译:Manduca sexta的幼虫是茄科植物的兼职专家。养在茄叶上的幼虫对寄主寄予厚望。否则,它们仍然是多食性的。马铃薯叶片中Manduca幼虫的宿主特异性识别线索是甾体糖苷,靛蓝D。两对Galeal味感官,即外侧和内侧感触香,对于限制寄主的幼虫的摄食偏好都是必要和充分的。我们从茄科或小麦胚芽饮食饲养的幼虫的感官中进行了电生理尖端记录。对于每只动物,比较了对靛蓝皂苷D,葡萄糖,番茄碱和氯化钾的反应记录。所有响应都包括相位和张力部分。将茄科幼虫的茎线虫感官定为靛蓝D,定义为对靛蓝D保持较高的敏感性,而对其他植物化合物的敏感性较低。茄类幼虫的一半感觉神经被“调节”到靛蓝D,而小麦胚芽饮食幼虫则没有。两种动物之间不同的反应是感官中单个受体细胞反应变化的结果。因此,以茄科叶为食似乎会导致单个味觉受体细胞的生理反应发生改变,从而使其适应宿主识别线索靛蓝D。我们建议这种调节是宿主限制性幼虫强壮的基础。茄科植物的行为偏好。

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