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首页> 外文期刊>BMC Ecology >Composition, uniqueness and connectivity across tropical coastal lagoon habitats in the Red Sea
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Composition, uniqueness and connectivity across tropical coastal lagoon habitats in the Red Sea

机译:在红海的热带沿海泻湖栖息地的构图,唯一性和连通性

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Tropical habitats and their associated environmental characteristics play a critical role in shaping macroinvertebrate communities. Assessing patterns of diversity over space and time and investigating the factors that control and generate those patterns is critical for conservation efforts. However, these factors are still poorly understood in sub-tropical and tropical regions. The present study applied a combination of uni- and multivariate techniques to test whether patterns of biodiversity, composition, and structure of macrobenthic assemblages change across different lagoon habitats (two mangrove sites; two seagrass meadows with varying levels of vegetation cover; and an unvegetated subtidal area) and between seasons and years. In total, 4771 invertebrates were identified belonging to 272 operational taxonomic units (OTUs). We observed that macrobenthic lagoon assemblages are diverse, heterogeneous and that the most evident biological pattern was spatial rather than temporal. To investigate whether macrofaunal patterns within the lagoon habitats (mangrove, seagrass, unvegetated area) changed through the time, we analysed each habitat separately. The results showed high seasonal and inter-annual variability in the macrofaunal patterns. However, the seagrass beds that are characterized by variable vegetation cover, through time, showed comparatively higher stability (with the lowest values of inter-annual variability and a high number of resident taxa). These results support the theory that seagrass habitat complexity promotes diversity and density of macrobenthic assemblages. Despite the structural and functional importance of seagrass beds documented in this study, the results also highlighted the small-scale heterogeneity of tropical habitats that may serve as biodiversity repositories. Comprehensive approaches at the “seascape” level are required for improved ecosystem management and to maintain connectivity patterns amongst habitats. This is particularly true along the Saudi Arabian?coast of the Red Sea, which is currently experiencing rapid coastal?development. Also, considering the high temporal variability (seasonal and inter-annual) of tropical shallow-water habitats, monitoring and management plans must include temporal scales.
机译:热带栖息地及其相关的环境特征在塑造大型脊椎动物群落中发挥着关键作用。评估空间和时间的多样性模式,并调查控制和生成这些模式的因素对于保护努力至关重要。然而,在亚热带和热带地区仍然明白这些因素仍然很差。本研究应用了单相和多变量技术的组合,以测试大型泻湖栖息地的宏观表情组合的生物多样性,组成和结构的模式(两个红树林;两个海草草甸,具有不同水平的植被覆盖;和一个植被覆盖的覆盖物区域)和季节和年之间。共有4771个无脊椎动物,属于272个运作分类单位(OTUS)。我们观察到Macrobenthic泻湖组合是多样的,异质的,并且最明显的生物模式是空间而不是时间。为了探讨泻湖栖息地(红树林,海草,未经面积)的宏指令模式是否随着时间而改变,我们分别分别分析了每个栖息地。结果表明了大型季节性和年间可变异性的高季节性和年间变异性。然而,通过可变植被覆盖的海草床,通过时间,稳定性相对较高(具有年度年间变异性的最低值和大量的居民征集)。这些结果支持海草栖息地复杂性促进宏观表情组合的多样性和密度的理论。尽管在本研究中记载了海草床的结构和功能性,但结果也强调了热带栖息地的小规模异质性,这可能是生物多样性储存库。改进生态系统管理需要“海景”级别的综合方法,并保持栖息地之间的连接模式。这沿沙特阿拉伯尤其如此?红海海岸,目前正在经历快速的沿海?发展。此外,考虑到热带浅水栖息地的高时间变异性(季节性和年度),监测和管理计划必须包括颞级。

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