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首页> 外文期刊>Cell Reports >A Cross-Species Analysis Reveals a General Role for Piezo2 in Mechanosensory Specialization of Trigeminal Ganglia from Tactile Specialist Birds
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A Cross-Species Analysis Reveals a General Role for Piezo2 in Mechanosensory Specialization of Trigeminal Ganglia from Tactile Specialist Birds

机译:跨物种分析揭示了Piezo2在来自触觉专家鸟的三叉神经节机械感测专业中的一般作用。

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A major challenge in biology is to link cellular and molecular variations with behavioral phenotypes. Here, we studied somatosensory neurons from a panel of bird species from the family Anatidae, known for their tactile-based foraging behavior. We found that tactile specialists exhibit a proportional expansion of neuronal mechanoreceptors in trigeminal ganglia. The expansion of mechanoreceptors occurs via neurons with intermediately and slowly inactivating mechanocurrent. Such neurons contain the mechanically gated Piezo2 ion channel whose expression positively correlates with the expression of factors responsible for the development and function of mechanoreceptors. Conversely, Piezo2 expression negatively correlates with expression of molecules mediating the detection of temperature and pain, suggesting that the expansion of Piezo2-containing mechanoreceptors with prolonged mechanocurrent occurs at the expense of thermoreceptors and nociceptors. Our study suggests that the trade-off between neuronal subtypes is a general mechanism of tactile specialization at the level of somatosensory system.
机译:生物学的主要挑战是将细胞和分子变异与行为表型联系起来。在这里,我们研究了来自An科的一组鸟类的体感神经元,该科以触觉为基础的觅食行为而闻名。我们发现,触觉专家表现出三叉神经节中神经元机械感受器的比例扩展。机械感受器的扩张通过神经元发生,中间和缓慢地使机械电流失活。此类神经元包含机械控制的Piezo2离子通道,其表达与负责机械感受器发育和功能的因子的表达呈正相关。相反,Piezo2的表达与介导温度和疼痛检测的分子的表达呈负相关,这表明随着机械电流的延长,含Piezo2的机械感受器的扩展发生了,但以热感受器和伤害感受器为代价。我们的研究表明,在体感系统水平上,神经元亚型之间的权衡是触觉专业化的一般机制。

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