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Edge Effects Are Important in Supporting Beetle Biodiversity in a Gravel-Bed River Floodplain

机译:边缘效应对于支持砾石床河漫滩中的甲虫生物多样性很重要

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摘要

Understanding complex, dynamic, and diverse ecosystems is essential for developing sound management and conservation strategies. Gravel-bed river floodplains are composed of an interlinked mosaic of aquatic and terrestrial habitats hosting a diverse, specialized, and endangered fauna. Therefore, they serve as excellent models to investigate the biodiversity of multiple ecotones and related edge effects. In this study, we investigated the abundance, composition, richness, and conservation status of beetle assemblages at varying sediment depth (0, 0.1, 0.6 and 1.1 m), distance from the channel (1, 5, 20, and 60–100 m, and 5 m within the riparian forest), and time of the year (February–November) across a 200 m-wide gravel bar at the near-natural Tagliamento River (Italy), to detect edge effects in four floodplain ecotones: aquatic-terrestrial, forest-active floodplain, sediment-air, and sediment-groundwater. We used conventional pitfall traps and novel tube traps to sample beetles comparably on the sediment surface and within the unsaturated sediments. We found a total of 308 beetle species (including 87 of conservation concern) that showed multiple, significant positive edge effects across the floodplain ecotones, mainly driven by spatial heterogeneity: Total and red list beetle abundance and richness peaked on the sediment surface, at channel margins, and at the edge of the riparian forest. All ecotones possessed edge/habitat specialists. Most red list species occurred on the sediment surface, including five species previously considered extinct – yet two of these species occurred in higher densities in the unsaturated sediments. Conservation and management efforts along gravel-bed rivers must therefore promote a dynamic flow and sediment regime to create and maintain habitat heterogeneity and ecotone diversity, which support a unique and high biodiversity.
机译:了解复杂,动态和多样化的生态系统对于制定合理的管理和保护策略至关重要。砾石河泛滥平原由水生和陆生生境的相互联系的马赛克组成,内有多种,专门的和濒临灭绝的动物。因此,它们是研究多个生态交错带的生物多样性和相关边缘效应的出色模型。在这项研究中,我们调查了在不同沉积深度(0、0.1、0.6和1.1 m),距河道的距离(1、5、20和60-100 m)下甲虫组合的丰度,组成,丰富度和保存状态。 ,河岸森林内5 m)和一年中的时间(2月至11月)跨越近自然的Tagliamento河(意大利)的200 m宽的碎石坝,以检测四个洪泛平原生态带的边缘效应:水生-陆地,活跃于森林的洪泛区,沉积物-空气和沉积物-地下水。我们使用传统的陷阱陷阱和新型管式陷阱,在沉积物表面和非饱和沉积物中对甲虫进行了比较。我们发现了总共308个甲虫物种(包括87个保护方面的物种),它们在整个洪泛平原过渡带表现出多重显着的正边缘效应,主要是由空间异质性驱动的:在通道的沉积物表面上,总和红色清单甲虫的丰度和丰度达到峰值边缘,在河岸森林的边缘。所有生态交错区均拥有边缘/栖息地专家。大多数红色名录物种都发生在沉积物表面,包括五个以前被认为已灭绝的物种,但是其中两个物种以较高的密度出现在非饱和沉积物中。因此,沿砾石河床的养护和管理工作必须促进动态的水流和沉积物制度,以创造和维持栖息地的异质性和生态交错带多样性,从而支持独特而高度的生物多样性。

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