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食虫蝙蝠(伊氏鼠耳蝠)种群和个体饮食生态位的季节性变化

Seasonal variation of population and individual dietary niche in the avivorous bat, Ia io.

作者信息

Gong Lixin, Gu Hao, Chang Yang, Wang Zhiqiang, Shi Biye, Lin Aiqing, Wu Hui, Feng Jiang, Jiang Tinglei

机构信息

Jilin Provincial Key Laboratory of Animal Resource Conservation and Utilization, Northeast Normal University, 2555 Jingyue Street, Changchun, 130117, China.

Key Laboratory of Vegetation Ecology of Education Ministry, Institute of Grassland Science, Northeast Normal University, 2555 Jingyue Street, Changchun, 130117, China.

出版信息

Oecologia. 2023 Mar;201(3):733-747. doi: 10.1007/s00442-023-05346-5. Epub 2023 Mar 16.

Abstract

The variation in niche breadth can affect how species respond to environmental and resource changes. However, there is still no clear understanding of how seasonal variability in food resources impacts the variation of individual dietary diversity, thereby affecting the dynamics of a population's dietary niche breadth. Optimal foraging theory (OFT) and the niche variation hypothesis (NVH) predict that when food resources are limited, the population niche breadth will widen or narrow due to increased within-individual dietary diversity and individual specialization or reduced within-individual dietary diversity, respectively. Here, we used DNA metabarcoding to examine the composition and seasonality of diets of the avivorous bat Ia io. Furthermore, we investigated how the dietary niches changed among seasons and how the population niche breadth changed when the availability of insect resources was reduced in autumn. We found that there was differentiation in dietary niches among seasons and a low degree of overlap, and the decrease of insect resource availability and the emergence of ecological opportunities of nocturnal migratory birds might drive dietary niche shifts toward birds in I. io. However, the population's dietary niche breadth did not broaden by increasing the within-individual dietary diversity or individual specialization, but rather became narrower by reducing dietary diversity via predation on bird resources that served as an ecological opportunity when insect resources were scarce in autumn. Our findings were consistent with the predictions of OFT, because birds as prey for bats provided extremely different resources from those of insects in size and nutritional value. Our work highlights the importance of size and quality of prey resources along with other factors (i.e., physiological, behavioral, and life-history traits) in dietary niche variation.

摘要

生态位宽度的变化会影响物种对环境和资源变化的响应方式。然而,对于食物资源的季节性变化如何影响个体饮食多样性的变化,进而影响种群饮食生态位宽度的动态变化,目前仍缺乏清晰的认识。最优觅食理论(OFT)和生态位变异假说(NVH)预测,当食物资源有限时,种群生态位宽度将分别因个体内饮食多样性增加和个体专业化程度提高,或者个体内饮食多样性降低而变宽或变窄。在此,我们利用DNA宏条形码技术研究了食虫蝙蝠凹脸蝠的饮食组成和季节性变化。此外,我们还研究了不同季节间饮食生态位如何变化,以及在秋季昆虫资源可用性降低时种群生态位宽度如何变化。我们发现,不同季节间饮食生态位存在分化且重叠程度较低,昆虫资源可用性的下降以及夜行性候鸟生态机会的出现可能促使凹脸蝠的饮食生态位向捕食鸟类转变。然而,种群饮食生态位宽度并未通过增加个体内饮食多样性或个体专业化程度而变宽,而是在秋季昆虫资源稀缺时,通过捕食作为生态机会的鸟类资源导致饮食多样性降低而变窄。我们的研究结果与最优觅食理论的预测一致,因为蝙蝠捕食的鸟类在大小和营养价值方面提供了与昆虫截然不同的资源。我们的工作强调了猎物资源大小和质量以及其他因素(即生理、行为和生活史特征)在饮食生态位变化中的重要性。

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