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首页> 外文期刊>Global change biology >Macroalgal blooms alter community structure and primary productivity in marine ecosystems
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Macroalgal blooms alter community structure and primary productivity in marine ecosystems

机译:巨藻水华改变了海洋生态系统的群落结构和初级生产力

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Eutrophication, coupled with loss of herbivory due to habitat degradation and overharvesting, has increased the frequency and severity of macroalgal blooms worldwide. Macroalgal blooms interfere with human activities in coastal areas, and sometimes necessitate costly algal removal programmes. They also have many detrimental effects on marine and estuarine ecosystems, including induction of hypoxia, release of toxic hydrogen sulphide into the sediments and atmosphere, and the loss of ecologically and economically important species. However, macroalgal blooms can also increase habitat complexity, provide organisms with food and shelter, and reduce other problems associated with eutrophication. These contrasting effects make their overall ecological impacts unclear. We conducted a systematic review and meta-analysis to estimate the overall effects of macroalgal blooms on several key measures of ecosystem structure and functioning in marine ecosystems. We also evaluated some of the ecological and methodological factors that might explain the highly variable effects observed in different studies. Averaged across all studies, macroalgal blooms had negative effects on the abundance and species richness of marine organisms, but blooms by different algal taxa had different consequences, ranging from strong negative to strong positive effects. Blooms' effects on species richness also depended on the habitat where they occurred, with the strongest negative effects seen in sandy or muddy subtidal habitats and in the rocky intertidal. Invertebrate communities also appeared to be particularly sensitive to blooms, suffering reductions in their abundance, species richness, and diversity. The total net primary productivity, gross primary productivity, and respiration of benthic ecosystems were higher during macroalgal blooms, but blooms had negative effects on the productivity and respiration of other organisms. These results suggest that, in addition to their direct social and economic costs, macroalgal blooms have ecological effects that may alter their capacity to deliver important ecosystem services.
机译:富营养化以及由于栖息地退化和过度捕捞而导致的草食性丧失,已经增加了全球大型藻类开花的频率和严重性。藻类大量繁殖会干扰沿海地区的人类活动,有时需要昂贵的藻类清除计划。它们还对海洋和河口生态系统产生许多有害影响,包括诱发缺氧,向沉积物和大气中释放有毒硫化氢,以及丧失具有生态和经济意义的重要物种。但是,藻类大量繁殖也会增加栖息地的复杂性,为生物提供食物和庇护所,并减少与富营养化有关的其他问题。这些不同的影响使其整体生态影响尚不清楚。我们进行了系统的综述和荟萃分析,以估算大型藻华对海洋生态系统结构和功能的几个关键指标的总体影响。我们还评估了一些生态和方法学因素,这些因素可能解释了在不同研究中观察到的高度可变的影响。在所有研究中平均得出,大型藻类开花对海洋生物的丰度和物种丰富度具有负面影响,但是不同藻类群的绽放具有不同的后果,范围从强烈的负面影响到强烈的正面影响。水华对物种丰富度的影响还取决于它们发生的栖息地,在沙质或泥泞的潮汐生境和潮间带岩石中,负面影响最强。无脊椎动物群落似乎对花特别敏感,它们的丰富度,物种丰富度和多样性降低。在大型藻类开花期间,总净初级生产力,初级总生产力和底栖生态系统的呼吸作用较高,但开花对其他生物的生产力和呼吸作用具有负面影响。这些结果表明,大型藻类除具有直接的社会和经济成本外,还具有生态效应,可能会改变其提供重要生态系统服务的能力。

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