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Fragmentation of nest and foraging habitat affects time budgets of solitary bees, their fitness and pollination services, depending on traits: Results from an individual-based model

机译:巢的破碎和觅食栖息地会影响单蜂的时间预算,它们的适应性和授粉服务,具体取决于性状:基于个体的模型的结果

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摘要

Solitary bees are important but declining wild pollinators. During daily foraging in agricultural landscapes, they encounter a mosaic of patches with nest and foraging habitat and unsuitable matrix. It is insufficiently clear how spatial allocation of nesting and foraging resources and foraging traits of bees affect their daily foraging performance. We investigated potential brood cell construction (as proxy of fitness), number of visited flowers, foraging habitat visitation and foraging distance (pollination proxies) with the model SOLBEE (simulating pollen transport by solitary bees, tested and validated in an earlier study), for landscapes varying in landscape fragmentation and spatial allocation of nesting and foraging resources. Simulated bees varied in body size and nesting preference. We aimed to understand effects of landscape fragmentation and bee traits on bee fitness and the pollination services bees provide, as well as interactions between them, and the general consequences it has to our understanding of the system. This broad scope gives multiple key results. 1) Body size determines fitness more than landscape fragmentation, with large bees building fewer brood cells. High pollen requirements for large bees and the related high time budgets for visiting many flowers may not compensate for faster flight speeds and short handling times on flowers, giving them overall a disadvantage compared to small bees. 2) Nest preference does affect distribution of bees over the landscape, with cavity-nesting bees being restricted to nesting along field edges, which inevitably leads to performance reductions. Fragmentation mitigates this for cavity-nesting bees through increased edge habitat. 3) Landscape fragmentation alone had a relatively small effect on all responses. Instead, the local ratio of nest to foraging habitat affected bee fitness positively through reduced local competition. The spatial coverage of pollination increases steeply in response to this ratio for all bee sizes. The nest to foraging habitat ratio, a strong habitat proxy incorporating fragmentation could be a promising and practical measure for comparing landscape suitability for pollinators. 4) The number of flower visits was hardly affected by resource allocation, but predominantly by bee size. 5) In landscapes with the highest visitation coverage, bees flew least far, suggesting that these pollination proxies are subject to a trade-off between either longer pollen transport distances or a better pollination coverage, linked to how nests are distributed over the landscape rather than being affected by bee size.
机译:孤独的蜜蜂很重要,但野生传粉者却在减少。在农业景观中的日常觅食期间,它们会遇到一小块镶嵌在一起的巢穴,觅食栖息地和不合适的基质。尚不清楚巢和觅食资源的空间分配以及蜜蜂的觅食特性如何影响其日常觅食性能。我们使用SOLBEE模型(模拟了单独蜜蜂的花粉运输,在较早的研究中进行了测试和验证),调查了潜在的巢细胞构造(作为适应性的代名词),探访的花朵数量,觅食的栖息地访问和觅食的距离(授粉代理)。不同的景观,包括景观破碎化,嵌套和觅食资源的空间分配。模拟蜜蜂的体型和筑巢偏好各不相同。我们旨在了解景观破碎化和蜜蜂性状对蜜蜂适应度和蜜蜂提供的授粉服务的影响,以及它们之间的相互作用,以及对我们对系统的理解带来的一般后果。这个广泛的范围给出了多个关键结果。 1)身体的大小决定健身的能力胜于景观破碎,而大型蜜蜂产生的育雏细胞更少。大蜜蜂对花粉的高要求以及访问许多花的相关高时间预算可能无法弥补较快的飞行速度和对花的短处理时间,因此与小蜜蜂相比,它们总体上具有劣势。 2)巢的偏好确实会影响蜜蜂在景观上的分布,而将巢巢蜜蜂限制在沿田间边缘筑巢,这不可避免地导致性能下降。碎片化通过增加边缘栖息地而减轻了巢巢蜜蜂的这种情况。 3)仅景观破碎化对所有响应的影响相对较小。取而代之的是,巢穴与觅食栖息地的局部比例通过减少局部竞争而积极影响了蜜蜂的健康状况。对于所有蜜蜂大小,授粉的空间覆盖率均响应此比率而急剧增加。巢与觅食生境的比率,结合破碎的强大的生境代理可能是比较有前景的授粉媒介景观的有希望和实际的措施。 4)探望花的次数几乎不受资源分配的影响,但主要受蜜蜂大小的影响。 5)在探访覆盖率最高的景观中,蜜蜂飞得最远,这表明这些授粉代理必须在更长的花粉运输距离或更好的授粉覆盖率之间进行权衡,这取决于巢穴在景观上的分布方式,而不是受到蜜蜂大小的影响。

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