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Spring-season flooding is a primary control of vegetation succession trajectories in primary mires

机译:春季季节洪水是主要泥潭中植被演替轨迹的主要控制因素

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Major regime shifts in mires such as the fen–bog transition and the transition from non-forested to forested peatland are driven by ecohydrological changes. However, little is known about how the magnitudes and/or durations of hydrological shifts relate to these regime shifts. Here we analyse long-term water table data in conjunction with plant community data collected from primary mires on the Finnish coast of the Gulf of Bothnia. These ecosystems represent various stages of drainage: undrained, drained sites with developing tree stands, and unsuccessfully drained sites not supporting tree encroachment. The varying success of drainage provides an ideal field laboratory for investigation of thresholds of water table control on the successional trajectories of primary mire. Our data indicate a likely mechanism for the control of vegetation regime shifts in northern peatlands by water table, with time of year being as important a factor as the magnitude of change. Spring flooding rather than summer water table level appeared to be crucial for controlling state shifts in primary mire vegetation. As the effects of climate change on peatlands are most likely to be mediated by changes in hydrology and water table level, our study indicates a need for more thorough investigation of seasonal variability in the controlling factors.
机译:泥沼的主要政权转移,例如the沼泽过渡和从非森林的泥炭地向森林的泥炭地过渡,都是由生态水文学变化驱动的。但是,人们对水文变化的幅度和/或持续时间与这些状态变化之间的关系知之甚少。在这里,我们结合从博特尼亚湾芬兰海岸主要沼泽收集的植物群落数据来分析长期地下水位数据。这些生态系统代表了排水的各个阶段:不排水的排水站点和正在生长的林分;不成功的排水站点不支持树木的入侵。排水的成功程度的变化为调查主要泥潭的连续轨迹上的地下水位控制阈值提供了理想的现场实验室。我们的数据表明,通过地下水位控制北部泥炭地植被状况变化的可能机制,每年的时间与变化幅度一样重要。春季洪水而不是夏季地下水位似乎对于控制主要泥潭植被的状态转移至关重要。由于气候变化对泥炭地的影响最有可能是由水文学和地下水位变化引起的,因此我们的研究表明需要对控制因素中的季节变化进行更彻底的调查。

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