首页> 外文期刊>Freshwater Biology >Elements of metacommunity structure and community-environment relationships in stream organisms
【24h】

Elements of metacommunity structure and community-environment relationships in stream organisms

机译:流生物中的元社区结构和社区-环境关系的要素

获取原文
获取原文并翻译 | 示例
           

摘要

Most metacommunity studies aim to explain variation in community structure using environmental and spatial variables. An alternative is to examine patterns emerging at the level of an entire metacommunity, whereby six models of metacommunity structure (i.e. random, chequerboards, nestedness, evenly spaced, Gleasonian gradients and Clementsian gradients) can be examined. We aimed to test the fit of six competing models of metacommunity structure to extensive survey data on diatoms, bacteria, bryophytes and invertebrates from three drainage basins in Finland, along a latitudinal gradient from 66 degrees N to 70 degrees N. Species were mainly distributed independently of one another (following the Gleasonian model) in the southernmost drainage basin (66 degrees N), whereas there were discrete community types, with sets of species responding similarly along environmental gradients (following the Clementsian model), in the northernmost drainage basin (70 degrees N). The patterns found were not directly related to an expected relationships between environmental heterogeneity and metacommunity structures, but rather to the geographical location of the drainage basin. There is evidently among-region variation in the best-fit models of metacommunity structure of stream organisms. These metacommunity patterns may show some similarities among biologically disparate organismal groups sampled at the set of the same sites, although the underlying environmental drivers of those patterns may vary between the groups.
机译:大多数元社区研究旨在利用环境和空间变量来解释社区结构的变化。一种替代方法是检查在整个元社区级别上出现的模式,从而可以检查六个元社区结构模型(即随机,棋盘格,嵌套,等距,格里森梯度和克莱门斯梯度)。我们旨在测试六个竞争性的元社区结构模型与来自芬兰三个流域的硅藻,细菌,苔藓植物和无脊椎动物的广泛调查数据(沿北纬66度到南北70度的纬度)的拟合度。物种主要独立分布在最南端的流域(66度)彼此之间(遵循格里森尼模型),而在最北端的流域(70)中存在离散的群落类型,各类物种在环境梯度上的响应相似(遵循克莱门茨模型)(70)度N)。发现的模式与环境异质性和元社区结构之间的预期关系并不直接相关,而是与流域的地理位置有关。河流生物元社区结构的最佳拟合模型显然存在区域间差异。这些元社区模式可能显示出在相同地点的一组样本上生物学上不同的有机体群体之间的某些相似之处,尽管这些模式的潜在环境驱动因素在不同群体之间可能有所不同。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号