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Contrasting Recolonization Strategies in Multi-Species Seagrass Meadows

机译:多种海草草甸的不同再殖民化策略

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This study shows that in a multi-species seagrass meadow in a shallow and clear-water site, all the former seagrass species were able to recolonize in the artificially created gaps of 0.25 m~2 in size within ca. 2 yr. Extrapolation of the recolonization curves of the different species predicted a full recovery within 10 yr post-disturbance. Fitted curves for the dominant species Enhalus acoroides and Thalassia hemprichii showed contrasting strategies, the latter having a comparatively high intrinsic rate, achieving full recovery within ca. 2 yr post-disturbance. E. acoroides was the latest species to establish and the projected full-recovery time was among the longest (ca. 10 yr). The effect of timing of gap creation was generally not significant (except for Syringodium isoetifolium) neither was the temporal variation in density of most species outside the gaps. As recolonization by sexual propagules was found to be low, increasing the gap size would most probably require a much longer recovery period. A crude estimate for E. acoroides would be > 10 yr for 1 m~2 of gap. Further, since the densities of most seagrass species vary significantly between sites, and colonization rates depend on adjacent seagrass densities, the recovery curves would also be different across sites.
机译:这项研究表明,在浅水和清澈水域的一个多物种海草草甸中,所有以前的海草物种都能够在大约0.25 m〜2的人为创建的间隙中重新定殖。 2年通过对不同物种的再定殖曲线进行外推,可以预测干扰后10年内将完全恢复。优势种Enhalus acoroides和Thalsia hemprichii的拟合曲线显示出相反的策略,后者具有相对较高的内在速率,可在约3 d内完全恢复。骚扰后2年。拟南芥是最新建立的物种,预计完全恢复时间最长(约10年)。间隙产生时间的影响通常并不显着(除了异丁香丁香),间隙之外大多数物种的密度随时间的变化也没有。由于发现有性繁殖体的繁殖力较低,因此增加缺口的大小很可能需要更长的恢复时间。对于1 m〜2的间隙,粗粒大肠埃希菌的粗略估计将> 10年。此外,由于大多数海草物种的密度在站点之间存在显着差异,并且移殖率取决于相邻的海草密度,因此恢复曲线在站点之间也将有所不同。

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