The role of biotic interactions in plant community assembly: What is the community species pool?
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The role of biotic interactions in plant community assembly: What is the community species pool?

机译:生物互动在植物社区集会中的作用:社区种类是什么?

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AbstractDifferences in plant species composition between a community and its species pool are considered to reflect the effect of community filters. If we define the species pool as a set of species able to reach a site and form a viable population in a given abiotic environment (i.e. to pass the dispersal and abiotic filter), the difference in species composition should correspond to the effect of biotic interactions. However, most of the operational definitions of the species pool are based on co-occurrence patterns and thus also reflect the effect of biotic relationships, including definitions based on functional plant traits, Ellenberg indicator values or Beals index. We conducted two seed introduction experiments in an oligotrophic wet meadow with the aim of demonstrating that many species excluded, according to the above definitions, from a species pool are in fact able to establish there successfully if competition is removed. In sowing experiments, we studied the establishment and survival of species after the removal of competition (i.e. in artificial gaps) and in intact vegetation. We also investigated inter-annual variability of seed germination and seedling establishment and competitive exclusion of sown species. The investigated species also included those from very different habitats (i.e. species with very low corresponding Beals index or Ellenberg indicator values that were different from the target community weighted mean). Many of these species were able to grow in the focal wet meadow if competition was removed, but they did not establish and survive in the intact community. These species are thus not limited by abiotic conditions, but by the
机译:<![CDATA [ 抽象 植物物种之间的差异,社区和其物种池之间的植物种类构成差异反映了社区过滤器的影响。如果我们将物种池定义为能够到达位点的一组物种并在给定的非生物环境中形成可行的人群(即通过分散和非生物过滤器),但物种组成的差异应该对应于生物相互作用的影响。然而,物种池的大多数操作定义是基于共发生模式,因此还反映了生物关系的影响,包括基于功能植物性状的定义,Ellenberg指示值或Bears指数。我们在寡营湿草地上进行了两种种子引入实验,目的是展示根据上述定义排除的许多物种,实际上,如果竞争被删除,则能够成功地建立。在播种实验中,我们研究了在去除竞争之后的物种的建立和生存(即人为差距)和完整的植被。我们还调查了种子萌发和苗木建立的年度变异性和竞争排斥的种类。调查的物种还包括来自非常不同的栖息地的物种(即,与目标群落加权平均值不同的相应低位指数的物种或ellenberg指标值不同)。如果竞争被删除,许多这些物种都能够在焦湿草地上生长,但他们没有在完整的社区中建立和生存。因此,这些物种不受非生物条件的限制,而是由

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