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首页> 外文期刊>Helgoland marine research >Mesoscale advection of Upogebia pusilla larvae through an upwelling filament in the Canaries Coastal Transition Zone (CTZ)
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Mesoscale advection of Upogebia pusilla larvae through an upwelling filament in the Canaries Coastal Transition Zone (CTZ)

机译:通过加那利海岸过渡区(CTZ)的上升流细线,Upogebia pusilla幼虫的中尺度对流

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摘要

Larval transport has a strong influence on marine populations and ecosystem function. Traditional hypotheses establish that larvae of coastal species are swept offshore during strong upwelling periods producing low recruitment rates; however, recent studies have demonstrated that this hypothesis is not supported by larval distribution data. The present study examines the influence of upwelling filaments on larval advection and wastage. During August 1993, the transport of Upogebia pusilla was analysed in relation to an offshore filament off Northwest Africa. This mesoscale structure was generated by a trapped, quasi-permanent cyclonic eddy located between the Canary Islands and the African shelf and extended 150 km westward into the oligotrophic open ocean waters. The horizontal distribution depicted by U. pusilla larvae was strongly influenced by the oceanographic features of the Canaries Coastal Transition Zone (CTZ). Specifically, the larvae were closely associated with upwelling front and filament position, showing that these neritic larvae can be advected 10-100s of kilometres offshore through the filament. However, the low larval densities observed in the samples suggest that many larvae might remain close to the coast, thus avoiding seaward transport. This implies that filaments probably do not significantly affect the recruitment success of intertidal invertebrates such us U. pusilla in upwelling systems.
机译:幼虫的运输对海洋生物和生态系统功能有重要影响。传统的假设表明,沿海物种的幼虫在强烈的上升流时期被冲刷到近海,从而导致较低的补充率。但是,最近的研究表明,这种假说不受幼虫分布数据的支持。本研究探讨了上升流丝对幼虫对流和浪费的影响。在1993年8月期间,分析了Upogebia pusilla的运输与西北非洲外海的一根长丝有关。这种中等规模的结构是由位于加那利群岛和非洲大陆架之间的一个被困的准永久性旋风涡旋产生的,向西延伸了150万公里,进入贫营养的开放海洋水域。 U. pusilla幼虫描绘的水平分布受到金丝雀沿海过渡区(CTZ)海洋特征的强烈影响。具体来说,幼虫与上升的前部和细丝的位置密切相关,表明这些线虫幼虫可以通过细丝向近海平移10-100公里。但是,在样本中观察到的低幼虫密度表明,许多幼虫可能仍留在海岸附近,从而避免了向海的运输。这意味着,细丝可能不会显着影响潮汐无脊椎动物(如美属普斯茅)在上升流系统中的募集成功。

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