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首页> 外文期刊>Integrative and Comparative Biology >Differentiation and Induced Sensorial Alteration of the Coronal Organ in the Asexual Life of a Tunicate
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Differentiation and Induced Sensorial Alteration of the Coronal Organ in the Asexual Life of a Tunicate

机译:分化和诱导冠状动脉在唐氏肌肉寿命中的感觉改变

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摘要

Tunicates, the sister group of vertebrates, possess a mechanoreceptor organ, the coronal organ, which is considered the best candidate to address the controversial issue of vertebrate hair cell evolution. The organ, located at the base of the oral siphon, controls the flow of seawater into the organism and can drive the "squirting" reaction, i.e., the rapid body muscle contraction used to eject dangerous particles during filtration. Coronal sensory cells are secondary mechanoreceptors and share morphological, developmental, and molecular traits with vertebrate hair cells. In the colonial tunicate Botryllus schlosseri, we described coronal organ differentiation during asexual development. Moreover, we showed that the ototoxic aminoglycoside gentamicin caused morphological and mechanosensorial impairment in coronal cells. Finally, fenofibrate had a strong protective effect on coronal sensory cells due to gentamicin-induced toxicity, as occurs in vertebrate hair cells. Our results reinforce the hypothesis of homology between vertebrate hair cells and tunicate coronal sensory cells.
机译:姐妹脊椎动物的姐妹组织,具有机械运动器官,冠状风琴,被认为是解决脊椎动物毛细胞演化的争议问题的最佳候选者。位于口腔虹吸管底部的器官控制海水流入生物体,并可以驱动“喷射”反应,即用于在过滤期间喷射危险颗粒的快速体肌收缩。冠状动脉细胞是辅助机械感受器,并与脊椎动物毛细胞分享形态,发育和分子性状。在殖民地剧本Botryllus Schlosseri中,我们描述了在有一种既时发展期间的冠状风琴差异化。此外,我们表明耳毒性氨基糖苷类庆大霉素导致冠状细胞的形态和机械损伤。最后,由于庆大霉素诱导的毒性,对芬纤维对冠状感觉细胞具有强烈的保护作用,如脊椎动物毛细胞所发生的。我们的结果强化了脊椎动物毛细胞与突出冠状动脉细胞之间的同源性的假设。

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