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Contemporary connectivity is sustained by wind- and current-driven seed dispersal among seagrass meadows

机译:通过风和电流驱动的种子在海草草甸之间的扩散来维持当代的连通性

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摘要

BackgroundSeagrasses are clonal marine plants that form important biotic habitats in many tropical and temperate coastal ecosystems. While there is a reasonable understanding of the dynamics of asexual (vegetative) growth in seagrasses, sexual reproduction and the dispersal pathways of the seeds remain poorly studied. Here we address the potential for a predominantly clonal seagrass, P. australis, to disperse over long distances by movement of floating fruit via wind and surface currents within the coastal waters of Perth, Western Australia. We first simulated the dominant atmospheric and ocean forcing conditions that are known to disperse these seagrass seeds using a three-dimensional numerical ocean circulation model. Field observations obtained at 8 sites across the study area were used to validate the model performance over ~2 months in summer when buoyant P. australis fruit are released into the water column. P. australis fruit dispersal trajectories were then quantified throughout the region by incorporating key physical properties of the fruit within the transport model. The time taken for the floating fruit to release their seed (dehiscence) was incorporated into the model based on laboratory measurements, and was used to predict the settlement probability distributions across the model domain.
机译:背景技术海草是无性海洋植物,在许多热带和温带沿海生态系统中形成重要的生物栖息地。尽管对海草无性(营养)生长的动力学有一个合理的了解,但对种子的有性繁殖和传播途径的研究仍很少。在这里,我们探讨了主要的无性海草潜在的P. australis在西澳大利亚州珀斯的沿海水域中通过风和地表水流通过漂浮的水果运动而长距离分散的可能性。我们首先使用三维数值海洋环流模型模拟了已知的主要大气和海洋强迫条件,这些条件分散了这些海草种子。在整个研究区域的8个地点获得的现场观测结果被用于验证夏季,当将浮游的澳洲野果释放到水柱中时,模型在大约2个月内表现良好。然后,通过在运输模型中纳入水果的关键物理特性,在整个区域内对澳大利亚假单胞菌的水果分散轨迹进行定量。基于实验室测量,将浮动水果释放其种子(裂开)所需的时间并入模型中,并用于预测整个模型域中的沉降概率分布。

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