Department of Forest and Wildlife Ecology, University of Wisconsin-Madison, Madison, Wisconsin 53706 USA.
College of Biological Science, University of Guelph, Guelph, Ontario N1G 2W1 Canada.
Sci Rep. 2016 Jul 28;6:29908. doi: 10.1038/srep29908.
Limited dispersal distance generates spatial aggregation. Intraspecific interactions are then concentrated within clusters, and between-species interactions occur near cluster boundaries. Spread of a locally dispersing invader can become motion of an interface between the invading and resident species, and spatial competition will produce variation in the extent of invasive advance along the interface. Kinetic roughening theory offers a framework for quantifying the development of these fluctuations, which may structure the interface as a self-affine fractal, and so induce a series of temporal and spatial scaling relationships. For most clonal plants, advance should become spatially correlated along the interface, and width of the interface (where invader and resident compete directly) should increase as a power function of time. Once roughening equilibrates, interface width and the relative location of the most advanced invader should each scale with interface length. We tested these predictions by letting white clover (Trifolium repens) invade ryegrass (Lolium perenne). The spatial correlation of clover growth developed as anticipated by kinetic roughening theory, and both interface width and the most advanced invader's lead scaled with front length. However, the scaling exponents differed from those predicted by recent simulation studies, likely due to clover's growth morphology.
扩散距离有限会产生空间聚集。种内相互作用集中在集群内,种间相互作用发生在集群边界附近。局部扩散的入侵物种的传播可能成为入侵和本地物种之间的界面运动,而空间竞争将沿着界面产生入侵进展程度的变化。动力学粗糙化理论提供了一个量化这些波动发展的框架,这些波动可能会将界面构造成自仿射分形,从而导致一系列时间和空间标度关系。对于大多数克隆植物来说,随着时间的推移,入侵前沿的空间相关性应该会增加,而界面的宽度(入侵物种和本地物种直接竞争的地方)也应该随时间呈幂函数增加。一旦粗糙化达到平衡,界面宽度和最先进的入侵物种的相对位置都应该与界面长度成比例。我们通过让白三叶草(Trifolium repens)入侵黑麦草(Lolium perenne)来检验这些预测。白三叶草生长的空间相关性如动力学粗糙化理论所预期的那样发展,界面宽度和最先进的入侵物种的领先位置都随前沿长度而变化。然而,这些标度指数与最近的模拟研究预测的不同,这可能是由于白三叶草的生长形态不同。