野生传粉媒介的营养生态位动态。

IF 3.5
Proceedings. Biological sciences Pub Date : 2025-08-01 Epub Date: 2025-08-27 DOI:10.1098/rspb.2025.0643
Justin A Bain, Jane E Ogilvie, William K Petry, Paul J CaraDonna
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引用次数: 0

摘要

食物是健康和生态相互作用的基础,然而,在自然群落中,营养物质的可用性如何影响物种相互作用仍然知之甚少。大多数营养生态学研究集中在实验室或单物种系统,限制了对野外复杂的多物种组合中营养利用和营养生态位动态的了解。我们将植物与传粉者的长期相互作用数据与花粉宏量营养素分析相结合,以研究野生大黄蜂如何利用宏量营养素以及它们是否占据不同的营养生态位。花粉常量营养成分在不同植物种类和季节之间存在差异,富含蛋白质的花粉在春季达到峰值,而富含脂质和碳水化合物的花粉在夏末增加。在这个营养景观中,大黄蜂物种占据了两个不同的宏量营养素生态位:一个是蛋白质含量高,脂肪和碳水化合物含量低,另一个是蛋白质含量低,但脂肪和碳水化合物含量适中。营养生态位分配与取食形态和菌落生命阶段的差异有关(但与物候无关)。我们发现很少有证据表明营养生态位宽度在物种之间存在差异,或者是由摄食形态或群体生命阶段来解释的。我们的研究结果将营养生态学扩展到多物种背景下,为野生传粉媒介之间的营养生态位分配提供了证据,并强调了在传粉媒介保护中考虑物种特异性营养需求的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nutrient niche dynamics among wild pollinators.

Food underpins fitness and ecological interactions, yet how nutrient availability shapes species interactions in natural communities remains poorly understood. Most nutritional ecology research focuses on laboratory or single-species systems, limiting insight into how nutrient use and nutrient niche dynamics occur in complex, multispecies assemblages in the wild. We combined long-term plant-pollinator interaction data with pollen macronutrient analyses to examine how wild bumble bees exploit macronutrients and whether they occupy distinct nutrient niches. Pollen macronutrient composition varied across plant species and over the season, with protein-rich pollen peaking in spring and lipid- and carbohydrate-rich pollen increasing by late summer. Across this nutrient landscape, bumble bee species occupied two distinct macronutrient niches: one high in protein and low in lipid and carbohydrate, and the other lower in protein but moderate in lipid and carbohydrate. Nutrient niche partitioning was associated with differences in feeding morphology and colony life stage (but not phenology). We found little evidence that nutrient niche breadth differed among species or was explained by feeding morphology or colony life stage. Our results extend nutritional ecology to a multispecies context, provide evidence for nutrient niche partitioning among wild pollinators and highlight the need to consider species-specific nutritional requirements in pollinator conservation.

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