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在一种储存食物的鸟类中,特殊的空间认知与认知衰老减缓有关。

Specialized spatial cognition is associated with reduced cognitive senescence in a food-caching bird.

作者信息

Heinen Virginia K, Pitera Angela M, Sonnenberg Benjamin R, Benedict Lauren M, Branch Carrie L, Bridge Eli S, Pravosudov Vladimir V

机构信息

Department of Biology, University of Nevada Reno, Reno, NV 89557, USA.

Cornell Lab of Ornithology, Cornell University, Ithaca, NY 14850, USA.

出版信息

Proc Biol Sci. 2021 Mar 31;288(1947):20203180. doi: 10.1098/rspb.2020.3180.

Abstract

Senescence, the gradual reduction and loss of function as organisms age, is a widespread process that is especially pronounced in cognitive abilities. Senescence appears to have a genetic basis and can be affected by evolutionary processes. If cognitive senescence is shaped by natural selection, it may be linked with selection on cognitive abilities needed for survival and reproduction, such that species where fitness is directly related to cognitive abilities should evolve delayed cognitive senescence likely resulting in higher lifetime fitness. We used wild food-caching mountain chickadees, which rely on specialized spatial cognition to recover thousands of food caches annually, to test for cognitive senescence in spatial learning and memory and reversal spatial learning and memory abilities. We detected no signs of age-related senescence in spatial cognitive performance on either task in birds ranging from 1 to 6 years old; older birds actually performed better on spatial learning and memory tasks. Our results therefore suggest that cognitive senescence may be either delayed (potentially appearing after 6 years) or negligible in species with strong selection on cognitive abilities and that food-caching species may present a useful model to investigate mechanisms associated with cognitive senescence.

摘要

衰老,即生物体随着年龄增长功能逐渐衰退和丧失,是一个普遍存在的过程,在认知能力方面尤为明显。衰老似乎有遗传基础,并可能受到进化过程的影响。如果认知衰老受到自然选择的塑造,那么它可能与对生存和繁殖所需认知能力的选择有关,因此,适合度与认知能力直接相关的物种应该进化出延迟的认知衰老,这可能会导致更高的终生适合度。我们以野生食物贮藏的北美黑顶山雀为研究对象,它们每年依靠专门的空间认知来找回数千个食物贮藏点,以此来测试其空间学习与记忆以及空间学习与记忆反转能力方面的认知衰老情况。在1至6岁的鸟类中,我们未在任何一项任务的空间认知表现中检测到与年龄相关的衰老迹象;实际上,年龄较大的鸟类在空间学习与记忆任务中表现得更好。因此,我们的研究结果表明,在对认知能力有强烈选择的物种中,认知衰老可能会延迟(可能在6年后出现)或微不足道,并且食物贮藏物种可能是研究与认知衰老相关机制的有用模型。

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