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Early Stages of Sea-Level Rise Lead To Decreased Salt Marsh Plant Diversity through Stronger Competition in Mediterranean-Climate Marshes

机译:海平面上升的早期阶段通过加强地中海气候沼泽的竞争导致盐沼植物多样性的减少

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摘要

Climate change shuffles species ranges and creates novel interactions that may either buffer communities against climate change or exacerbate its effect. For instance, facilitation can become more prevalent in salt marshes under stressful conditions while competition is stronger in benign environments. Sea-level rise (SLR) is a consequence of climate change that affects the distribution of stress from inundation and salinity. To determine how interactions early in SLR are affected by changes in these two stressors in Mediterranean-climate marshes, we transplanted marsh turfs to lower elevations to simulate SLR and manipulated cover of the dominant plant species, Salicornia pacifica (formerly Salicornia virginica). We found that both S. pacifica and the subordinate species were affected by inundation treatments, and that subordinate species cover and diversity were lower at low elevations in the presence of S. pacifica than when it was removed. These results suggest that the competitive effect of S. pacifica on other plants is stronger at lower tidal elevations where we also found that salinity is reduced. As sea levels rise, stronger competition by the dominant plant will likely reduce diversity and cover of subordinate species, suggesting that stronger species interactions will exacerbate the effects of climate change on the plant community.
机译:气候变化使物种范围发生变化,并产生新的相互作用,可能缓冲社区抵抗气候变化或加剧其影响。例如,在压力条件下的盐沼中,简化手续变得更加普遍,而在良性环境中,竞争更加激烈。海平面上升(SLR)是气候变化的结果,它影响了淹没和盐碱化造成的压力分布。为了确定SLR早期的交互作用如何受到地中海气候沼泽中这两个压力源变化的影响,我们将沼泽地草皮移植到较低的海拔高度以模拟SLR并操纵优势植物种Salicornia pacifica(以前称为Salicornia virginica)的覆盖。我们发现,太平洋沙棘和下属物种都受到淹没处理的影响,在有沙门氏菌存在的低海拔地区,下属物种的覆盖度和多样性要比去除时低。这些结果表明,在较低的潮汐高度上,太平洋链球菌对其他植物的竞争作用更强,我们还发现盐度降低了。随着海平面上升,优势植物的竞争可能会降低多样性和下属物种的覆盖率,这表明更强的物种相互作用将加剧气候变化对植物群落的影响。

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