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Geese are overlooked dispersal vectors for vascular plants in archipelago environments

机译:鹅对群岛环境中的血管植物被忽视的分散载体

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Question We addressed the importance of gut-mediated dispersal by greylag geese for vascular plants in archipelago environments and asked: (a) What proportion of the local species pool is dispersed by geese? (b) Which plant traits characterize species dispersed by geese? (c) Which plant communities are likely to benefit from endozoochory by geese? Location Three Swedish Baltic archipelagos. Methods Goose droppings were collected on 45 islands. Plants germinating from the droppings represent the endozoochorous species pool (ESP). On 108 islands, the presence of vascular plants was recorded in each habitat. These species represent the island species pool (ISP). Differences in functional traits between ESP and ISP were expressed as effect sizes and tested using meta-regressions. Using indicator species analyses and indicator species for managed semi-natural grasslands, we identified the primary habitats of the ESP. Results Geese dispersed viable diaspores of 97 plant species, which represents 22% of the ISP. Most ESP species were typical for small islands. Geese dispersed a higher proportion of graminoids and less woody plants, higher proportions of chamaephytes and therophytes and less phanerophytes; annuals and bi-annuals were significantly overrepresented. On average, seed volume of the ESP was 95% smaller than that of the ISP. About 51% of all ESP species were dispersed in at least two archipelagos. Geese showed a bias towards species of rocky shore habitats. Conclusion Geese potentially disperse large amounts of diaspores of many terrestrial island plant species. Through their feeding behaviour, geese select species with certain suites of traits from the regional species pool. Plant dispersal by geese may benefit plants species of rocky shores, but species of formerly managed semi-natural grasslands may also find refuge sites on epilittoral shores after goose-mediated dispersal. The relative importance of geese as dispersal vectors may increase under on-going land-use changes and cessation of grazing networks.
机译:问题我们通过群岛环境中的血管植物进行了肠道鹅的血管植物的重要性,并询问:(a)鹅分散了当地物种池的比例? (b)哪种植物特征表征鹅分散的物种? (c)哪些植物社区可能会受到鹅的Endozoochory中受益?位置三个瑞典波罗的海群岛。方法收集了45个岛屿的鹅粪。从粪便中发芽的植物代表了肠溶性物种池(ESP)。在108个岛屿上,每个栖息地都记录了血管植物的存在。这些物种代表岛屿种池(ISP)。 ESP和ISP之间的功能性状的差异表示为使用元回归的效果大小和测试。使用指示器物种分析和用于管理半天然草原的指示器物种,我们确定了ESP的主要栖息地。结果鹅分散了97种植物物种的活性缺水,占ISP的22%。大多数ESP物种对于小岛屿是典型的。鹅分散了较高比例的禾本科和较少的木质植物,高比例的chamaephytes和of therophytes和较少的植物形状;年度和双年度显着超越。平均而言,ESP的种子体积比ISP小于95%。大约51%的ESP种类分散在至少两个群岛中。鹅对岩石岸边栖息地的种类表现出偏见。结论鹅可能分散了许多陆地岛植物种类的大量缺水。通过他们的饲养行为,鹅选择具有来自区域物种池的某些特征套件的物种。 Geese的植物分散可能会使岩石海岸的植物植物,但原来管理的半天然草原的种类也可能在鹅介导的分散后发现副海岸的避难所。鹅作为分散载体的相对重要性可能会在正在进行的土地利用变化和放牧网络停止下增加。

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