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Condition of larval red snapper (Lutjanus campechanus) relative to environmental variability and the Deepwater Horizon oil spill

机译:幼体红鲷鱼(Lutjanus campechanus)的状况与环境变化和“深水地平线”溢油的关系

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摘要

The Deepwater Horizon oil spill (DWHOS) spatially and temporally overlapped with the spawning of many fish species, including Red Snapper, one of the most economically important reef fish in the Gulf of Mexico. To investigate potential impacts of the DWHOS on larval Red Snapper, data from a long-term ichthyoplankton survey off the coast of Alabama were used to examine: (1) larval abundances among pre-impact (2007–2009), impact (2010), and post-impact (2011, 2013) periods; (2) proxies for larval condition (size-adjusted morphometric relationships and dry weight) among the same periods; and (3) the effects of background environmental variation on larval condition. We found that larval Red Snapper were in poorer body condition during 2010, 2011, and 2013 as compared to the 2007–2009 period, a trend that was strongly (and negatively) related to variation in Mobile Bay freshwater discharge. However, larvae collected during and after 2010 were in relatively poor condition even after accounting for variation in freshwater discharge and other environmental variables. By contrast, no differences in larval abundance were detected during these survey years. Taken together, larval supply did not change relative to the timing of the DWHOS, but larval condition was negatively impacted. Even small changes in condition can affect larval survival, so these trends may have consequences for recruitment of larvae to juvenile and adult life stages.
机译:深水地平线漏油事件(DWHOS)在时空上与许多鱼类的产卵重叠,其中包括Red Snapper,这是墨西哥湾最重要的珊瑚礁鱼之一。为了研究DWHOS对幼体红鲷鱼的潜在影响,我们使用了阿拉巴马州沿海的一项鱼类浮游动物长期调查数据,以调查:(1)撞击前的幼虫数量(2007-2009),影响(2010),以及影响后(2011年,2013年)期间; (2)同期的幼虫状况(尺寸调整形态关系和干重)的代理; (3)背景环境变化对幼虫状况的影响。我们发现,与2007–2009年相比,幼体红鲷鱼在2010年,2011年和2013年的身体状况较差,这一趋势与莫比尔湾淡水排放量的变化强烈(负相关)。但是,即使考虑到淡水排放量和其他环境变量的变化,2010年及之后收集的幼体状况也相对较差。相比之下,在这些调查年中未发现幼虫丰度的差异。两者合计,幼虫的供应相对于DWHOS的时间没有变化,但是幼虫的状况受到了负面影响。即使状况的微小变化也会影响幼虫的生存,因此这些趋势可能会导致幼虫进入幼年和成年阶段的后果。

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