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Response of Fish Assemblage Structure and Function Following Restoration of Two Small Bahamian Tidal Creeks

机译:两条巴哈马潮汐小溪恢复后鱼类集合结构和功能的响应

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Disruption of hydrologic connectivity via road crossings is extremely common in Bahamian tidal creeks, resulting in increased sedimentation and decreased habitat quality and quantity for biota. We restored hydrologic connectivity (i.e., tidal flow) in two small Bahamian mangrove tidal creeks in May 2004 and 2005. We observed the characteristics of fish assemblage structure (species richness) and function (secondary production and transient species utilization of restored areas) before and after restoration, and compared these data with fragmented and unfragmented reference creeks. Restoration significantly increased species richness and secondary production of resident fish species in one of the two restored creeks. Increased utilization of the previously blocked wetlands by transient fishes was observed in both creeks. We suggest success could be attributed to the presence of adjacent nearshore recruitment sources, a more complex local seascape (i.e., high habitat heterogeneity in the creek and local nearshore), and the creation of deep upstream refugia pools. This is one of the first studies to use both structural and functional characteristics to monitor the success of restoration in mangrove ecosystems. Studies combining both structural and functional metrics in restoration monitoring are imperative in linking restoration ecology theory with practical ecological restoration efforts.
机译:在巴哈马的潮汐小溪中,通过道路交叉口破坏水文连通性极为普遍,导致沉积增加,生物群的栖息地质量和数量下降。我们分别于2004年5月和2005年5月在两个巴哈马红树林潮汐小溪中恢复了水文连通性(即潮汐流)。我们观察了鱼群结构(物种丰富度)和功能(恢复区的次生产量和瞬时物种利用)的特征。恢复后,将这些数据与零碎和无碎片的参考小河进行比较。恢复后,两条恢复后的小溪之一显着增加了物种丰富度和常驻鱼类的次级生产。在两个小溪中都观察到暂时性鱼类对先前被阻塞的湿地的利用增加。我们认为成功的原因可能是邻近的近海征募资源的存在,更复杂的当地海景(即小河和当地近岸的高栖息地异质性)以及深水上游避难所的建立。这是利用结构和功能特征来监测红树林生态系统恢复成功的首批研究之一。在恢复监测中将结构和功能指标结合起来的研究对于将恢复生态学理论与实际的生态恢复工作联系起来至关重要。

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