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Landscape transformation alters functional diversity in coastal seascapes

机译:景观转型改变了沿海藻拍的功能多样性

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The ecological impacts of landscape modification and urbanisation have transformed the composition of plant and animal assemblages, and altered the condition of ecosystems globally. Landscape transformation influences the spatial distribution of species and ecological functions by selecting for generalist species with wide ecological niches, which can adapt to opportunities in highly-modified environments. These effects of landscape modification can shape functional diversity on land, but it is not clear whether they have similar functional consequences in the sea. We used estuaries as a model system to test how landscape transformation alters functional diversity in coastal seascapes, and measured how variation in level of urbanisation, catchment modification and habitat loss influenced fish diversity across thirty-nine estuaries in eastern Australia. Fish were surveyed with baited remote underwater video stations and functional diversity was indexed with three metrics that describe variation in the functional traits and niche space of assemblages. The extent of landscape transformation in the catchment of each estuary was associated with variation in the functional diversity of estuarine fish assemblages. These effects were, however, not what we expected as functional diversity was highest in modified estuaries that supported a large area of both urban and grazing land in their catchments, were bordered by a small area of natural terrestrial vegetation and that contained a moderate area of mangroves. Zoobenthivores and omnivores dominated assemblages in highly-modified estuaries, and piscivorous fishes were common in natural waterways. Our results demonstrate, that the modification and urbanisation of ecosystems on land can alter functional diversity in the sea. Intense landscape transformation appears to select for abundant generalists with wide trophic niches, and against species with specialised diets, and we suggest that these changes might have fundamental consequences for ecosystem functioning in estuaries, and other highly modified seascapes.
机译:景观改造和城市化的生态影响转化了植物和动物组合的组成,并改变了全球生态系统的状况。景观转型通过选择具有宽生态利基的通用物种来影响物种和生态功能的空间分布,这可以适应高度修改环境中的机会。这些景观改性的影响可以在土地上塑造功能多样性,但目前尚不清楚它们在海中是否具有类似的功能后果。我们使用河口作为模型系统,以测试景观转型如何改变沿海藻类的功能多样性,并测量了城市化程度,集水区改装和栖息地影响了澳大利亚东部三十九个河口的鱼类多样性。用被诱饵远程水下视频站调查鱼类,并且功能多样性被编写了三个指标,描述了功能性状的变化和组合的利基空间。每个河口集水区内的景观转化程度与河口鱼组合的功能多样性的变化有关。然而,这些效果不是我们所预期的功能多样性在经过功能多样性的改良河中最高,支持在他们的集水区中城市和放牧地区的大面积,被一小部分自然陆地植被界着,其中包含温和的地区红树林。 Zoobenthivores和Omnivores在高度修饰的河口中主导组装,并且在天然水道中常见的氏鱼类。我们的结果表明,土地上生态系统的修改和城市化可以改变海洋中的功能多样性。似乎激烈的景观转换似乎选择了具有宽营养不良的巨型利基的丰富的通流,以及针对具有专门饮食的物种,并且我们建议这些变化可能对河口中运作的生态系统以及其他高度修改的藻类的基本后果。

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