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Species recruitment in alpine plant communities: the role of species interactions and productivity

机译:高山植物群落中的物种招募:物种相互作用和生产力的作用

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P>1. It is not clear how local and regional processes influence plant species recruitment. Local abiotic factors are predicted to constrain recruitment under harsh environmental conditions and low productivity, whereas the role of seed availability may be more important at intermediate productivity. The role of establishment limitation (local interactions) is predicted to increase under high productivity due to competition.2. This study examined the effects of local biotic interactions, such as competition and facilitation from the resident vegetation, on alpine plant species recruitment, and investigated whether the role of species interactions depended on productivity. All naturally emerging seedlings were recorded in plots with intact vegetation and where vegetation had been removed, in a natural low-productivity alpine Dryas heath and in plots where productivity had increased after fertilizing.3. Positive effects of vegetation removal on seedling emergence suggested that competition from neighbour vegetation may have an important role for recruitment in alpine plant communities. The role of competitive release increased with productivity. Productivity increased short-term, but not long-term seedling recruitment, likely due to increased competition from re-growth over time. There was no effect of productivity on species richness recovery after vegetation removal.4. There was a positive relationship between neighbour species richness and seedling density in the low-productivity plots, but not in the high-productivity plots. Local seed production was the major seed source in both parts of the heath, but in the high-productivity plots, the high abundance of a few species in the species pool was more important for seedling recruitment than species richness.5. Synthesis. Competition may play a significant role for plant species recruitment in environmentally harsh habitats of low productivity, where abiotic factors or facilitation traditionally are predicted to be more important ecological filters. Climate warming and increased nitrogen deposition may result in higher productivity of tundra plant communities, which may increase the role of competition, and the identity of neighbour species may become more important for recruitment than species richness.
机译:P> 1。目前尚不清楚局部和区域性过程如何影响植物物种的吸收。预计在恶劣的环境条件和较低的生产力下,局部非生物因素会限制募集,而在中等生产力下,可利用种子的作用可能更为重要。由于竞争,在高生产率下,建立局限性(局部相互作用)的作用预计会增加。2。这项研究研究了本地生物相互作用(例如来自常驻植被的竞争和促进)对高山植物物种募集的影响,并研究了物种相互作用的作用是否取决于生产力。所有自然生长的幼苗都记录在植被完好且已去除植被的地块,天然低产高寒石楠荒地以及施肥后生产力提高的地块中。3。植被去除对幼苗出苗的积极影响表明,来自邻近植被的竞争可能对高山植物群落的募集具有重要作用。竞争释放的作用随着生产力的提高而增加。短期内提高了产量,但长期没有提高幼苗的产量,这可能是由于随着时间的推移重新生长带来的竞争加剧。植被去除后生产力对物种丰富度恢复没有影响。4。在低生产力地块,邻近物种的丰富度与幼苗密度之间存在正相关关系,而在高生产力地块中则没有。荒地的两个地方都是当地种子的主要种子来源,但在高产区,种库中少数物种的高丰度对幼苗的招募比物种丰富度更为重要。5。合成。在生产力低下,环境恶劣的生境中,竞争可能对招募植物物种起着重要作用,传统上非生物因素或促进作用据认为是更重要的生态过滤器。气候变暖和氮沉积增加可能会导致苔原植物群落的生产力提高,这可能会增加竞争的作用,并且邻近物种的身份可能比物种丰富度对招募更为重要。

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