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Trace element profiles of the sea anemone Anemonia viridis living nearby a natural CO2 vent

机译:生活在天然CO2排放口附近的海葵Anemonia viridis的痕量元素分布

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摘要

Ocean acidification (OA) is not an isolated threat, but acts in concert with other impacts on ecosystems and species. Coastal marine invertebrates will have to face the synergistic interactions of OA with other global and local stressors. One local factor, common in coastal environments, is trace element contamination. CO2 vent sites are extensively studied in the context of OA and are often considered analogous to the oceans in the next few decades. The CO2 vent found at Levante Bay (Vulcano, NE Sicily, Italy) also releases high concentrations of trace elements to its surrounding seawater, and is therefore a unique site to examine the effects of long-term exposure of nearby organisms to high pCO2 and trace element enrichment in situ. The sea anemone Anemonia viridis is prevalent next to the Vulcano vent and does not show signs of trace element poisoning/stress. The aim of our study was to compare A. viridis trace element profiles and compartmentalization between high pCO2 and control environments. Rather than examining whole anemone tissue, we analyzed two different body compartments—the pedal disc and the tentacles, and also examined the distribution of trace elements in the tentacles between the animal and the symbiotic algae. We found dramatic changes in trace element tissue concentrations between the high pCO2/high trace element and control sites, with strong accumulation of iron, lead, copper and cobalt, but decreased concentrations of cadmium, zinc and arsenic proximate to the vent. The pedal disc contained substantially more trace elements than the anemone’s tentacles, suggesting the pedal disc may serve as a detoxification/storage site for excess trace elements. Within the tentacles, the various trace elements displayed different partitioning patterns between animal tissue and algal symbionts. At both sites iron was found primarily in the algae, whereas cadmium, zinc and arsenic were primarily found in the animal tissue. Our data suggests that A. viridis regulates its internal trace element concentrations by compartmentalization and excretion and that these features contribute to its resilience and potential success at the trace element-rich high pCO2 vent.
机译:海洋酸化(OA)并非孤立的威胁,而是与对生态系统和物种的其他影响协同作用。沿海海洋无脊椎动物将必须面对OA与其他全球和本地压力源的协同相互作用。在沿海环境中常见的一种本地因素是微量元素污染。在OA的背景下,对CO2排放点进行了广泛的研究,并且通常被认为与未来几十年的海洋相似。在莱万特湾(意大利西西里岛内的西西里岛武尔卡诺市)发现的二氧化碳排放口也向周围的海水中释放出高浓度的微量元素,因此,它是一个独特的场所,可用于检查附近生物长期暴露于高pCO2和微量的影响原位元素富集。海葵Anemonia viridis普遍存在于Vulcano通风口旁,没有痕量元素中毒/应激的迹象。我们研究的目的是比较高pCO2与对照环境之间的绿色拟南芥微量元素分布和区室化。我们没有检查整个海葵组织,而是分析了两个不同的体室–踏板盘和触手,并且还检查了动物和共生藻类之间触手中微量元素的分布。我们发现在高pCO2 /高微量元素和对照位点之间,微量元素组织浓度发生了显着变化,其中铁,铅,铜和钴大量积累,但靠近通风口的镉,锌和砷浓度降低。踏板盘所含的痕量元素比海葵的触手要多得多,这表明踏板盘可作为多余痕量元素的排毒/储存场所。在触手中,各种微量元素在动物组织和藻类共生体之间显示出不同的分配方式。在这两个地点,铁主要存在​​于藻类中,而镉,锌和砷主要存在于动物组织中。我们的数据表明,拟南芥通过分隔和排泄来调节其内部微量元素的浓度,这些特征有助于其在富含微量元素的高pCO2排放口的适应性和潜在成功。

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