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西部边界流从石油平台驱动太阳珊瑚(Tubastraea spp.)的沿海入侵。

Western boundary currents drive sun-coral (Tubastraea spp.) coastal invasion from oil platforms.

机构信息

Laboratory of Ocean and Atmosphere Studies (LOA), Earth Observation and Geoinformatics Division, National Institute for Space Research (INPE), São José dos Campos, SP, Brazil.

Earth and Environmental Physics Department (DFTMA), Physics Institute, Ondina Campus, Federal University of Bahia (UFBA), Salvador, Brazil.

出版信息

Sci Rep. 2022 Mar 28;12(1):5286. doi: 10.1038/s41598-022-09269-8.

Abstract

Most marine species have a planktonic larval phase that benefit from the surface oceanic flow to enhance their dispersion potential. For invasive species, the interaction of environmentally resistant larvae with different flow regimes and artificial substrates can lead to complex larval dispersion patterns and boost geographic expansion. In the Southwest Atlantic, the invasive corals Tubastraea spp. (sun-coral) have been recorded biofouling on oil platforms since the late 1980s. These platforms are considered important vectors for the established populations throughout the Brazilian coast. However, we still do not know how the position of these structures relative to regional flow contribute to the natural dispersion potential of these invaders on a regional scale. Herein, we used an eddy-resolving ocean model (ROMS) and an Individual Based Model (IBM-Ichthyop) to simulate the natural dispersion patterns of sun-coral larvae from all oil platforms on Brazilian oil-producing basins, for the austral summer and winter along 6 years (2010-2015) in 90-day simulations. We found that mortality rates by advection were significantly higher during the winter (p = 0.001) and when sources of larvae were compared throughout this season (p = 1.9 × 10). The influence of two western boundary currents and persistent eddy activity contribute to the dispersal of larvae to distances up to 7000 km. The effectiveness of each oil-producing basin as vectors for the entire Brazilian coastline, measured as the percentage of larval supply, highlights the importance of the northern Ceará (59.89%) and Potiguar (87.47%) basins and the more central Camamu (44.11%) and Sergipe-Alagoas (39.20%) basins. The poleward shift of the Southern branch of the South Equatorial Current during the winter causes larvae released from the Sergipe-Alagoas and Camamu basins to enter the North Brazil Current, expanding their dispersion towards the north. The Brazil Current disperses larvae southwards, but strong mesoscale activity prevents their dispersion to the coast, especially for those released from the oil platforms on Campos and Santos basins. Within this complex hydrodynamic setting, a few source areas, like those in the Sergipe-Alagoas and Camamu basins, can potentially contribute to the spread of larvae along nearly all the Brazilian coast. Therefore, oil platforms act as possible chronic sources of sun-coral propagules to the coast, emphasizing the urgency for a more detailed set of actions to control and monitor these invasive exotic species.

摘要

大多数海洋物种都有浮游幼虫阶段,它们受益于海洋表面流来增强其扩散潜力。对于入侵物种,具有环境抗性的幼虫与不同的流动模式和人工基质的相互作用可能导致复杂的幼虫扩散模式,并促进地理扩张。在西南大西洋,入侵珊瑚 Tubastraea spp.(太阳珊瑚)自 20 世纪 80 年代末以来就已在石油平台上附着生物污垢。这些平台被认为是巴西沿海地区已建立种群的重要传播媒介。然而,我们仍然不知道这些结构相对于区域流的位置如何有助于这些入侵者在区域尺度上的自然扩散潜力。在此,我们使用了一个涡旋分辨海洋模式(ROMS)和一个基于个体的模型(IBM-Ichthyop)来模拟来自巴西产油盆地所有石油平台的太阳珊瑚幼虫的自然扩散模式,在 6 年(2010-2015 年)的 90 天模拟中,模拟了南澳大利亚夏季和冬季的情况。我们发现,冬季的平流死亡率显著更高(p=0.001),并且在整个季节中幼虫的来源进行比较时(p=1.9×10)也更高。两个西部边界流和持续的涡旋活动的影响有助于幼虫扩散到 7000 公里的距离。每个产油盆地作为整个巴西海岸线的传播媒介的有效性,以幼虫供应的百分比来衡量,突出了北塞阿拉(59.89%)和波蒂瓜尔(87.47%)盆地以及更居中的卡马穆(44.11%)和塞尔希培-阿拉戈斯(39.20%)盆地的重要性。冬季南赤道海流的南半球分支的北移导致从塞尔希培-阿拉戈斯和卡马穆盆地释放的幼虫进入北巴西海流,从而向北部扩展其扩散范围。巴西暖流将幼虫向南扩散,但强烈的中尺度活动阻止其向海岸扩散,特别是对于从坎波斯和桑托斯盆地的石油平台释放的幼虫。在这种复杂的水动力环境中,一些源区,如塞尔希培-阿拉戈斯和卡马穆盆地,可能有助于幼虫在几乎整个巴西海岸的传播。因此,石油平台可能成为太阳珊瑚繁殖体向海岸扩散的慢性潜在来源,这强调了采取更详细的行动来控制和监测这些入侵外来物种的紧迫性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd66/8960833/f531afcdbe65/41598_2022_9269_Fig1_HTML.jpg

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