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Interactive effects of live coral and structural complexity on the recruitment of reef fishes

机译:活珊瑚和结构复杂性对珊瑚礁鱼类招募的互动影响

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摘要

Corals reefs are subjected to multiple disturbances that modify levels of coral cover and structural complexity of the reef matrix, and in turn influence the structure of associated fish communities. With disturbances predicted to increase, insight into how changes in substrate condition will influence the recruitment of many fishes is essential for understanding the recovery of reef fish populations following biological and physical disturbances. While studies have revealed that both live coral cover and structural complexity are important for many fishes, there is a lack of understanding regarding how a combination of these changes will impact the recruitment of fishes. This study used experimentally constructed patch reefs consisting of six different habitat treatments; three levels of live coral cover (high, medium, low) crossed with two levels of structural complexity (high, low), to test the independent and combined effects of live coral cover and structural complexity on the recruitment and recovery of fish communities. The abundance and species diversity of fishes varied significantly among the six habitat treatments, but differences were not clearly associated with either coral cover or structural complexity and varied through time. More striking, however, was a significant difference in the composition of fish assemblages among treatments, due mostly to disproportionate abundance of coral-dwelling fishes on high coral cover, high complexity reefs. Overall, it appears that coral cover had a more important influence than structural complexity, at least for the contrasting levels of structural complexity achieved on experimental patch reefs. Furthermore, we found that live coral cover is important for the recruitment of some non-coral-dependent fishes. This study confirms that live coral cover is critical for the maintenance of high biodiversity on tropical coral reefs, and that sustained and ongoing declines in coral cover will adversely affect recruitment for many different species of reef fishes.
机译:珊瑚礁受到多种干扰,从而改变了珊瑚的覆盖水平和礁基质的结构复杂性,进而影响了相关鱼类群落的结构。由于预计干扰会增加,因此了解底物状况的变化将如何影响许多鱼类的捕获对于了解生物和物理干扰后礁鱼种群的恢复至关重要。尽管研究表明活珊瑚的覆盖和结构的复杂性对许多鱼类都很重要,但对于这些变化的结合将如何影响鱼类的捕捞尚缺乏了解。这项研究使用了由实验建造的斑驳礁石,包括六种不同的栖息地处理方法;三个层次的活珊瑚覆盖度(高,中,低)与两个层次的结构复杂度(高,低)相交,以测试活珊瑚覆盖度和结构复杂度对鱼类群落招募和恢复的独立和综合影响。在六个栖息地处理方法中,鱼类的丰度和物种多样性差异很大,但差异与珊瑚覆盖率或结构复杂性没有明显关系,并且随时间变化。然而,更引人注目的是各处理之间鱼群组成的显着差异,这主要是由于高珊瑚覆盖率,高复杂性礁石上的珊瑚栖鱼数量过多所致。总体而言,似乎珊瑚覆盖比结构复杂性具有更重要的影响,至少对于在实验斑块礁上达到的结构复杂性的对比水平而言更是如此。此外,我们发现活珊瑚覆盖物对于招募一些非珊瑚依赖的鱼类很重要。这项研究证实,活珊瑚覆盖物对于维持热带珊瑚礁上的高生物多样性至关重要,而持续不断的珊瑚覆盖率下降将对许多不同种类的珊瑚鱼的捕捞产生不利影响。

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