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Marine dock pilings foster diverse native cryptobenthic fish assemblages across bioregions

机译:海上码头打桩在整个生物区域内培育了多种多样的原生隐栖鱼类

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摘要

Anthropogenic habitats are increasingly prevalent in coastal marine environments. Previous research on sessile epifauna suggests that artificial habitats act as a refuge for nonindigenous species, which results in highly homogenous communities across locations. However, vertebrate assemblages that live in association with artificial habitats are poorly understood. Here, we quantify the biodiversity of small, cryptic (henceforth “cryptobenthic”) fishes from marine dock pilings across six locations over 35° of latitude from Maine to Panama. We also compare assemblages from dock pilings to natural habitats in the two southernmost locations (Panama and Belize). Our results suggest that the biodiversity patterns of cryptobenthic fishes from dock pilings follow a Latitudinal Diversity Gradient (LDG), with average local and regional diversity declining sharply with increasing latitude. Furthermore, a strong correlation between community composition and spatial distance suggests distinct regional assemblages of cryptobenthic fishes. Cryptobenthic fish assemblages from dock pilings in Belize and Panama were less diverse and had lower densities than nearby reef habitats. However, dock pilings harbored almost exclusively native species, including two species of conservation concern absent from nearby natural habitats. Our results suggest that, in contrast to sessile epifaunal assemblages on artificial substrates, artificial marine habitats can harbor diverse, regionally characteristic assemblages of vertebrates that follow macroecological patterns that are well documented for natural habitats. We therefore posit that, although dock pilings cannot function as a replacement for natural habitats, dock pilings may provide cost‐effective means to preserve native vertebrate biodiversity, and provide a habitat that can be relatively easily monitored to track the status and trends of fish biodiversity in highly urbanized coastal marine environments.
机译:在沿海海洋环境中,人为栖息地越来越普遍。先前对无土表动物的研究表明,人工栖息地可作为非本地物种的避难所,从而导致各地的社区高度同质。然而,人们对与人工栖息地结合生活的脊椎动物群了解甚少。在这里,我们对从缅因州到巴拿马超过35度纬度的六个地点的海上码头打桩中的小型隐性鱼类(以下简称“隐性鱼类”)的生物多样性进行了量化。我们还比较了两个最南端位置(巴拿马和伯利兹)从码头打桩到自然栖息地的组合。我们的结果表明,来自码头打桩的隐栖鱼类的生物多样性模式遵循纬度多样性梯度(LDG),随着纬度的增加,当地和区域的平均多样性急剧下降。此外,群落组成与空间距离​​之间的强烈相关性暗示了隐栖鱼类的不同区域组合。与附近的珊瑚礁栖息地相比,伯利兹和巴拿马的码头打捞的隐底栖鱼类组合多样性较低,密度较低。但是,码头打桩几乎只包含本地物种,其中包括附近自然栖息地中缺少的两个保护物种。我们的研究结果表明,与在人造基质上的无柄epi生动物组合相反,人造海洋栖息地可以容纳脊椎动物的各种区域特征性组合,这些组合遵循为自然栖息地记录的宏观生态模式。因此,我们认为,尽管码头堆不能代替自然栖息地,但是码头堆可以提供经济有效的手段来保护本地脊椎动物的生物多样性,并提供可以相对容易地监测以追踪鱼类生物多样性状况和趋势的栖息地。在高度城市化的沿海海洋环境中。

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