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Pilot Testing of a Sampling Methodology for Assessing Seed Attachment Propensity and Transport Rate in a Soil Matrix Carried on Boot Soles and Bike Tires

机译:用于评估靴底和自行车轮胎携带的土壤基质中种子附着倾向和转运速率的采样方法的先导测试

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摘要

Land managers of natural areas are under pressure to balance demands for increased recreation access with protection of the natural resource. Unintended dispersal of seeds by visitors to natural areas has high potential for weedy plant invasions, with initial seed attachment an important step in the dispersal process. Although walking and mountain biking are popular nature-based recreation activities, there are few studies quantifying propensity for seed attachment and transport rate on boot soles and none for bike tires. Attachment and transport rate can potentially be affected by a wide range of factors for which field testing can be time-consuming and expensive. We pilot tested a sampling methodology for measuring seed attachment and transport rate in a soil matrix carried on boot soles and bike tires traversing a known quantity and density of a seed analog (beads) over different distances and soil conditions. We found % attachment rate on boot soles was much lower overall than previously reported, but that boot soles had a higher propensity for seed attachment than bike tires in almost all conditions. We believe our methodology offers a cost-effective option for researchers seeking to manipulate and test effects of different influencing factors on these two dispersal vectors.
机译:自然区域的土地管理者承受着压力,需要在增加休闲娱乐的需求和保护自然资源之间取得平衡。访客不经意地将种子散布到自然地区,很可能导致杂草植物入侵,初始种子附着是散布过程中的重要步骤。尽管步行和骑山地自行车是基于自然的流行娱乐活动,但很少有研究量化种子对靴底的附着和运输速率的倾向,而对自行车轮胎的附着率和传播率没有量化的研究。附着和运输速度可能会受到多种因素的影响,而现场测试可能既耗时又昂贵。我们试验性地测试了一种采样方法,该方法用于测量在靴底和自行车轮胎上承载的土壤基质中的种子附着和转运速率,该基质在不同距离和土壤条件下遍历已知数量和密度的类似物(珠子)。我们发现,靴底的附着率%总体上比以前报道的要低得多,但是在几乎所有条件下,靴底的附着性都比自行车轮胎高。我们相信我们的方法为寻求操纵和测试不同影响因素对这两种分散媒介的影响的研究人员提供了一种经济高效的选择。

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