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Sargassum blooms in the Caribbean alter the trophic structure of the sea urchin Diadema antillarum

机译:加勒比海的Sargassum盛开改变了海胆的营养结构Diadema antillarum

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摘要

The arrival of large masses of drifting Sargassum since 2011 has caused changes in the natural dynamics of Caribbean coastal ecosystems. In the summer of 2015, unprecedented and massive mats of S. fluitans and S. natans have been observed throughout the Mexican Caribbean including exceptional accumulations ashore. This study uses stable isotopes to assess the impact of Sargassum blooms on the trophic dynamics of the Diadema antillarum sea urchin, a keystone herbivore on many Caribbean reefs. Bayesian models were used to estimate the variations in the relative proportions of carbon and nitrogen of assimilated algal resources. At three lagoon reef sites, the niche breadth of D. antillarum was analysed and compared under massive influx of drifting Sargassum spp. vs. no influx of Sargassum blooms. The effects of the leachates generated by the decomposition of Sargassum led to hypoxic conditions on these reefs and reduced the taxonomic diversity of macroalgal food sources available to D. antillarum. Our trophic data support the hypothesis that processes of assimilation of carbon and nitrogen were modified under Sargassum effect. Isotopic signatures of macroalgae associated with the reef sites exhibited significantly lower values of δ15N altering the natural herbivory of D. antillarum. The Stable Isotopes Analysis in R (SIAR) indicated that, under the influence of Sargassum blooms, certain algal resources (Dictyota, Halimeda and Udotea) were more assimilated due to a reduction in available algal resources. Despite being an abundant available resource, pelagic Sargassum was a negligible contributor to sea urchin diet. The Stable Isotope Bayesian Ellipses in R (SIBER) analysis displayed differences between sites, and suggests a reduction in trophic niche breadth, particularly in a protected reef lagoon. Our findings reveal that Sargassum blooms caused changes in trophic characteristics of D. antillarum with a negative impact by hypoxic conditions. These dynamics, coupled with the increase in organic matter in an oligotrophic system could lead to reduce coral reef ecosystem function.
机译:自2011年以来,大量漂流的Sargassum的到来已引起加勒比沿海生态系统自然动态的变化。 2015年夏天,在整个墨西哥加勒比海地区观察到史无前例的巨型S. fluitans和S. natans垫子,包括岸上的大量堆积物。这项研究使用稳定的同位素来评估马尾藻(Sargassum bloom)对Diadema antillarum sea urchin(许多加勒比海礁石上的基石食草动物)的营养动力学的影响。贝叶斯模型被用来估计同化藻类资源中碳和氮的相对比例的变化。在三个泻湖礁区,分析并比较了在漂移的Sargassum spp大量涌入的情况下,D。antillarum的生态位宽度。与没有大量的马尾藻开花有关。由马尾藻分解产生的渗滤液的影响导致这些珊瑚礁处于低氧状态,并降低了香菇D. antillarum可获得的大型藻类食物来源的分类学多样性。我们的营养数据支持这样的假说,即在Sargassum效应下碳和氮的同化过程被修改。与珊瑚礁部位相关的大型藻类的同位素特征表现出较低的δ 15 N值,从而改变了香菇的天然草食性。 R中的稳定同位素分析(SIAR)表明,在海藻繁殖期间,某些藻类资源(Dictyota,Halimeda和 Udotea )由于可利用的藻类资源减少而更加同化。尽管有丰富的可利用资源,但远洋的 Sargassum 对海胆饮食的贡献却微不足道。 R中的稳定同位素贝叶斯椭圆(SIBER)分析显示了位点之间的差异,并表明营养位的宽度减小了,特别是在受保护的礁湖中。我们的发现表明, Sargassum 的开花导致 D的营养特性发生变化。抗氧剂,对缺氧条件有不利影响。这些动态,再加上贫营养系统中有机物的增加,可能导致珊瑚礁生态系统功能降低。

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