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在季节性干旱景观中的蝙蝠花网络中,高资源重叠和一致的广义相互作用模式。

High Resource Overlap and a Consistently Generalised Pattern of Interactions in a Bat-Flower Network in a Seasonally Dry Landscape.

作者信息

Tremlett Constance J, Chapman Mark, Maher Kathryn H, Keller Alexander, Blüthgen Nico, Peh Kelvin S-H, Zamora-Gutierrez Veronica

机构信息

School of Biological Sciences University of Southampton Southampton UK.

Ecological Networks Lab, Department of Biology Technische Universität Darmstadt Darmstadt Germany.

出版信息

Ecol Evol. 2024 Oct 9;14(10):e70367. doi: 10.1002/ece3.70367. eCollection 2024 Oct.

Abstract

Pollination is an ecosystem process that is crucial to maintain biodiversity and ecosystem function. Bats are important pollinators in the tropics and are an integral part of complex plant-pollinator interaction networks. However, network analysis-based approaches are still scarce at the plant species and bat community levels. We used metabarcoding to identify plant taxa present in pollen from fur and faecal samples collected across 1 year from three nectar-feeding bat roosts in central Mexico. We calculated the frequency of occurrence of plant taxa and assembled a zoocentric network of bat-plant interactions. We constructed a year-long network, encompassing the entire period of sampling, two seasonal networks comprising the wet and dry seasons, and six individual networks from sampling at two-month intervals across the year. Four species of nectar-feeding bats interacted with 36 plant species from 16 families. We found highly generalised interaction patterns across networks corresponding with opportunistic feeding behaviour by bats, with little seasonal variation in network structure. There was high resource overlap between bat species, and bats visited a diverse range of plant species even during periods with a high abundance of particular resources in the landscape. The diverse diet of nectar-feeding bats emphasises the importance of floristically rich natural habitats in the landscape to provide reliable foraging resources year-round in a seasonally variable system. While a generalised network structure is thought to increase robustness, further research is necessary to understand how fluctuations in pollinator abundance and diversity in the face of land use and climate change may impact bat-flower networks and the consequences to plant communities.

摘要

授粉是一个对维持生物多样性和生态系统功能至关重要的生态系统过程。蝙蝠是热带地区重要的传粉者,是复杂的植物 - 传粉者相互作用网络中不可或缺的一部分。然而,在植物物种和蝙蝠群落层面,基于网络分析的方法仍然很少。我们使用宏条形码技术,从墨西哥中部三个食蜜蝙蝠栖息地在一年时间内收集的皮毛和粪便样本中的花粉中鉴定出存在的植物分类群。我们计算了植物分类群的出现频率,并构建了一个以动物为中心的蝙蝠 - 植物相互作用网络。我们构建了一个涵盖整个采样期的全年网络、两个分别包含雨季和旱季的季节网络,以及一年中每隔两个月采样得到的六个单独网络。四种食蜜蝙蝠与来自16个科的36种植物相互作用。我们发现不同网络间存在高度普遍化的相互作用模式,这与蝙蝠的机会主义觅食行为相对应,网络结构几乎没有季节性变化。蝙蝠物种之间存在高度的资源重叠,即使在景观中特定资源丰富的时期,蝙蝠也会访问多种植物物种。食蜜蝙蝠多样化的饮食强调了景观中植物种类丰富的自然栖息地的重要性,以便在季节性变化的系统中全年提供可靠的觅食资源。虽然普遍化的网络结构被认为可以增加稳健性,但仍需要进一步研究,以了解面对土地利用和气候变化时传粉者数量和多样性的波动如何影响蝙蝠 - 花朵网络以及对植物群落的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e38/11461904/d9c8f532409e/ECE3-14-e70367-g001.jpg

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