Triiodothyronine (T3) action on aquatic locomotor behavior during metamorphosis of the bullfrog Rana catesbeiana.

Marisabel Fernández-Mongil, Celia J Venza, Amelia Rivera, J. Lasalde-Dominicci, Warren Burggren, L. Rojas
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Abstract

Thyroid hormones--particularly triiodothyronine, T3--play a critical role in the morphological transformations comprising metamorphosis in larval bullfrogs (Rana catesbeiana). Traditional staging criteria for anuran larvae incompletely distinguish physiological and behavioral changes during growth. We therefore first developed a new parameter to describe larval growth, the developmental index (DI), which is simply the ratio between the tail length of the larva and its head diameter. Using the DI we were able to identify two distinct populations classifying the larvae during growth along a continuous linear scale with a cutoff value of DI at 2.8. Classification based on the DI, used in this study, proved an effective complement to existing classifications based on developmental staging into pre- or pro-metamorphic stages. Exposure to T3 in the water induced a rapid (beginning within 5 min) and significant decrease (approximately 20-40%) in locomotor activity, measured as total distance traversed and velocity. The largest decrease occurred in more developed larvae (DI<2.8). To determine correlated changes in the neuromuscular junctions during metamorphosis and apoptotic tail loss, miniature endplate currents from tail muscle were recorded during acute exposure to a hypertonic solution, which simulates an apoptotic volume decrease. Our results support a role for T3 in regulating larval locomotor activity during development, and suggest an enhanced response to volume depletion at the neuromuscular junction of older larvae (DI<2.8) compared to younger animals (DI> or =2.8). We discuss the significance of the possible role of an apoptotic volume decrease at the level of the neuromuscular junction.
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三碘甲状腺原氨酸(T3)对牛蛙变形过程中水中运动行为的影响。
甲状腺激素——尤其是三碘甲状腺原氨酸(T3)——在牛蛙幼虫(Rana catesbeiana)的变形过程中起着关键作用。传统的幼虫分期标准不能完全区分幼虫生长过程中的生理和行为变化。因此,我们首先提出了一个新的参数来描述幼虫的生长,即发育指数(DI),它是幼虫尾巴长度与头直径的比值。在连续的线性尺度上,采用DI值为2.8的临界值,鉴定出两个不同的种群。本研究中使用的基于DI的分类被证明是对现有的基于发育阶段分为前变质期或前变质期的分类的有效补充。在水中暴露于T3会导致运动活动迅速(在5分钟内开始)和显著下降(约20-40%),以穿越的总距离和速度测量。较发达的幼虫下降幅度最大(DI =2.8)。我们讨论了在神经肌肉接点水平上凋亡体积减少的可能作用的意义。
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