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首页> 外文期刊>Journal of Vegetation Science >Spatial pattern and process at the plant neighbourhood scale: insights from communities dominated by the clonal grass Elymus repens (L.) Gould.
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Spatial pattern and process at the plant neighbourhood scale: insights from communities dominated by the clonal grass Elymus repens (L.) Gould.

机译:植物邻里尺度的空间格局和过程:以克隆草 Elymus repens (L.)Gould为主的社区的见解。

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Question: How do clonal traits of a locally dominant grass (Elymus repens (L.) Gould.) respond to soil heterogeneity and shape spatial patterns of its tillers? How do tiller spatial patterns constrain seedling recruitment within the community? Locations: Artificial banks of the River Rhone, France. Material and Methods: We examined 45 vegetation patches dominated by Elymus repens. During a first phase we tested relationships between soil variables and three clonal traits (spacer length, number of clumping tillers and branching rate), and between the same clonal traits and spatial patterns (i.e. density and degree of spatial aggregation) of tillers at a very fine scale. During a second phase, we performed a sowing experiment to investigate effects of density and spatial patterns of E. repens on recruitment of eight species selected from the regional species pool. Results: Clonal traits had clear effects - especially spacer length - on densification and aggregation of E. repens tillers and, at the same time, a clear response of these same clonal traits as soil granulometry changed. The density and degree of aggregation of E. repens tillers was positively correlated to total seedling cover and diversity at the finest spatial scales. Conclusions: Spatial patterning of a dominant perennial grass responds to soil heterogeneity through modifications of its clonal morphology as a trade-off between phalanx and guerrilla forms. In turn, spatial patterns have strong effects on abundance and diversity of seedlings. Spatial patterns of tillers most probably led to formation of endogenous gaps in which the recruitment of new plant individuals was enhanced. Interestingly, we also observed more idiosyncratic effects of tiller spatial patterns on seedling cover and diversity when focusing on different growth forms of the sown species.Digital Object Identifier http://dx.doi.org/10.1111/j.1654-1103.2011.01304.x
机译:问题:局部优势草(Elymus repens (L.)Gould。)的克隆性状如何响应土壤异质性和分till的空间格局?分er空间格局如何限制社区内的幼苗招募?地点:法国罗纳河的人工河岸。材料和方法:我们检查了以 Elymus repens 为主的45个植被斑块。在第一阶段,我们测试了土壤变量与三个克隆性状(间隔长度,成簇的分ers数和分支速率)之间的关系,以及相同的克隆性状和分patterns的空间格局(即密度和空间聚集度)之间的关系。精细的规模。在第二阶段,我们进行了播种实验,以研究密度和空间格局对E的影响。补充从区域物种库中选择的八种物种。结果:克隆性状对 E的致密化和聚集具有明显的影响-特别是间隔长度。同时,随着土壤粒度的变化,这些相同的克隆性状也得到了清晰的响应。 E的密度和聚集度。在最好的空间尺度上,白桦分ers与幼苗的总覆盖率和多样性呈正相关。结论:多年生优势草的空间格局通过改变其克隆形态来应对土壤异质性,这是指节与游击形态之间的权衡。反过来,空间格局对幼苗的丰度和多样性也有很强的影响。分ers的空间格局最有可能导致形成内源性缺口,从而增强了新植物个体的招募。有趣的是,当我们关注播种的不同生长形式时,我们还观察到分er空间格局对幼苗覆盖和多样性的更多特质效应。数字对象标识符http://dx.doi.org/10.1111/j.1654-1103.2011.01304 。X

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