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亚洲蟾蜍脑大小沿海拔梯度的变化()。 (原文括号部分内容缺失,翻译可能不完全准确)

Brain size variation along altitudinal gradients in the Asiatic Toad ().

作者信息

Yao Zhongyi, Qi Yin, Yue Bisong, Fu Jinzhong

机构信息

Chengdu Institute of Biology Chinese Academy of Sciences Chengdu China.

College of Life Sciences Sichuan University Chengdu China.

出版信息

Ecol Evol. 2021 Jan 26;11(7):3015-3027. doi: 10.1002/ece3.7192. eCollection 2021 Apr.

Abstract

Size changes in brain and brain regions along altitudinal gradients provide insight into the trade-off between energetic expenditure and cognitive capacity. We investigated the brain size variations of the Asiatic Toad () across altitudes from 700 m to 3,200 m. A total of 325 individuals from 11 sites and two transects were sampled. To reduce confounding factors, all sampling sites within each transect were within a maximum distance of 85 km and an altitudinal difference close to 2,000 m. Brains were dissected, and five regions were both measured directly and with 3D CT scan. There is a significant negative correlation between the relative whole-brain volume (to snout-vent length) and altitude. Furthermore, the relative volumes (to whole-brain volume) of optic tectum and cerebellum also decrease along the altitudinal gradients, while the telencephalon increases its relative volume along the gradients. Therefore, our results are mostly consistent with the expensive brain hypothesis and the functional constraint hypothesis. We suggest that most current hypotheses are not mutually exclusive and data supporting one hypothesis are often partially consistent with others. More studies on mechanisms are needed to explain the brain size evolution in natural populations.

摘要

大脑及脑区大小沿海拔梯度的变化为深入了解能量消耗与认知能力之间的权衡提供了线索。我们调查了亚洲蟾蜍( )在海拔700米至3200米范围内的脑大小变化。从11个地点和两条样带共采集了325个个体。为减少混杂因素,每条样带内的所有采样地点之间的最大距离为85公里,海拔差异接近2000米。对大脑进行解剖,并对五个脑区进行了直接测量和三维CT扫描。相对全脑体积(相对于吻肛长度)与海拔之间存在显著的负相关。此外,视顶盖和小脑的相对体积(相对于全脑体积)也沿海拔梯度减小,而端脑的相对体积则沿梯度增加。因此,我们的结果大多与昂贵大脑假说和功能限制假说一致。我们认为,目前的大多数假说并非相互排斥,支持一种假说的数据往往与其他假说部分一致。需要更多关于机制的研究来解释自然种群中的脑大小进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d596/8019028/5e24391e7cc2/ECE3-11-3015-g004.jpg

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