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隔离生境斑块的种籽损失边界

Bounding Seed Loss from Isolated Habitat Patches.

机构信息

Mathematics and Statistics Department, Carleton College, One North College Street, Northfield, MN, 55057, USA.

出版信息

Bull Math Biol. 2024 Oct 28;86(12):141. doi: 10.1007/s11538-024-01367-0.

Abstract

Dispersal of propagules (seeds, spores) from a geographically isolated habitat into an uninhabitable matrix can play a decisive role in driving population dynamics. ODE and integrodifference models of these dynamics commonly feature a "dispersal success" parameter representing the average proportion of dispersing propagules that remain in viable habitat. While dispersal success can be estimated by empirical measurements or by integration of dispersal kernels, one may lack resources for fieldwork or details on dispersal kernels for numerical computation. Here we derive simple upper bounds on the proportion of propagule loss-the complement of dispersal success-that require only habitat area, habitat perimeter, and the mean dispersal distance of a propagule. Using vector calculus in a probabilistic framework, we rigorously prove bounds for the cases of both symmetric and asymmetric dispersal. We compare the bounds to simulations of integral models for the population of Asclepias syriaca (common milkweed) at McKnight Prairie-a 14 hectare reserve surrounded by agricultural fields in Goodhue County, Minnesota-and identify conditions under which the bounds closely estimate propagule loss.

摘要

从地理上隔离的栖息地扩散(种子、孢子)到不适宜居住的基质中,可以在驱动种群动态方面发挥决定性作用。这些动态的 ODE 和积分差分模型通常具有一个“扩散成功”参数,代表了在可行栖息地中存活的扩散传播物的平均比例。虽然扩散成功率可以通过经验测量或通过扩散核的积分来估计,但人们可能缺乏野外工作的资源,或者缺乏数值计算的扩散核的详细信息。在这里,我们推导出了仅需栖息地面积、栖息地周长和传播物的平均扩散距离即可获得的传播物损失比例(即扩散成功率的补数)的简单上限。我们使用概率论中的向量微积分,严格证明了对称和不对称扩散情况下的边界。我们将这些边界与明尼苏达州古德休县麦金太尔保护区(一个 14 公顷的保护区,周围是农田)的乳草种群积分模型的模拟进行了比较,并确定了边界能够紧密估计传播物损失的条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fdd/11519115/5cb05bd685ac/11538_2024_1367_Fig1_HTML.jpg

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