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Tropical stream diatom communities - The importance of headwater streams for regional diversity

机译:热带河流硅藻群落-源头河流对区域多样性的重要性

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Understanding how species are distributed in space and time is a focal element guiding conservational efforts under ongoing climate change and the Holocene extinction. Freshwater habitats are currently one of the most threatened ecosystem types, and studies aiming to unravel factors that govern biodiversity of tropical stream micro-organisms are especially scarce. Diatoms play an important role as primary producers in streams and are widely used as ecological indicators. However, relatively little is known about which factors affect diatom communities in the tropics.Here, we studied benthic diatom diversity across 67 tropical streams spanning stream orders 1–5 in Kenya. We examined whether the hypothesis of latitudinal diversity gradient applies for benthic diatoms, i.e. whether tropical streams encompass more species than boreal streams using a comparable boreal dataset. In addition, we studied which environmental, land use and spatial factors control benthic diatom communities using redundancy analysis. We also examined the nestedness and turnover components of beta diversity, factors contributing to diatom species richness, and the uniqueness of the communities across stream orders by using boosted regression trees and local contribution to beta diversity. Finally, we studied whether environmental heterogeneity and beta diversity are related across stream orders and tested their relationship using tests of homogeneity of dispersion and regression analysis.Species richness was not higher in tropical streams than in boreal ones. Tropical diatom communities were controlled jointly by local environmental and spatial factors. Although water chemistry was the most important controlling factor, also physical variables contributed significantly to community variation. Land use had also a significant effect on diatom communities as broad leaved forest streams harboured different diatom communities compared with streams with higher human impact and conductivity, stressing the importance of forests to water quality and diatom biodiversity. Headwater streams encompassed the highest species turnover, whereas nestedness was higher in higher order streams. Species richness was significantly higher in higher order streams than in headwaters, whereas the uniqueness of the communities peaked in headwaters. Environmental heterogeneity was the highest in headwater streams and was related to high beta diversity, which highlights the importance of habitat heterogeneity to biodiversity. Our results stress the management and conservational importance of headwater streams and tropical montane forests as these environments harbour unique diatom communities important for regional diversity.
机译:理解物种在空间和时间上的分布方式是指导在持续的气候变化和全新世灭绝下的保护工作的重点。淡水生境目前是最受威胁的生态系统类型之一,旨在弄清控制热带河流微生物生物多样性的因素的研究特别少。硅藻作为溪流的主要生产者发挥着重要作用,并被广泛用作生态指标。但是,对哪些因素影响热带硅藻群落的了解相对较少。在这里,我们研究了肯尼亚横贯河流阶数为1-5的67条热带河流底栖硅藻的多样性。我们使用可比较的北方数据集检查了纬度多样性梯度的假设是否适用于底栖硅藻,即热带河流是否包含比北方河流更多的物种。此外,我们使用冗余分析研究了哪些环境,土地利用和空间因素控制底栖硅藻群落。我们还通过使用增强的回归树和局部对β多样性的贡献,研究了β多样性的嵌套和周转成分,促成硅藻物种丰富性的因素以及跨河水阶的群落独特性。最后,我们研究了环境异质性和β多样性是否在河流阶次之间相关联,并使用分散均匀性测试和回归分析检验了它们之间的关系。热带河流域的物种丰富度不高于北方河流域。热带硅藻群落受当地环境和空间因素共同控制。尽管水化学是最重要的控制因素,但物理变量也对群落变化做出了重要贡献。土地利用对硅藻群落也有重要影响,因为阔叶阔叶林的溪流与硅藻群落相比具有更高的人类影响力和电导率,从而强调了森林对水质和硅藻生物多样性的重要性。源头水流包括最高的物种周转率,而高阶流中的嵌套度更高。高阶流域的物种丰富度明显高于上游水域,而群落的独特性则在上游水域达到顶峰。在上游水源中,环境异质性最高,与高β多样性有关,这凸显了栖息地异质性对生物多样性的重要性。我们的结果强调了源头水流和热带山地森林的管理和保护重要性,因为这些环境中蕴藏着对区域多样性至关重要的独特硅藻群落。

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