Seeing the invisible: XRF reveals lead distributions in coral organisms grown in the Red Sea (Gulf of Aqaba).

IF 3.3 3区 化学 Q2 CHEMISTRY, PHYSICAL
Katrein Sauer, Maayan Neder, Ivo Zizak, Paul Zaslansky, Tali Mass
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Abstract

Lead (Pb) contamination in marine ecosystems poses a significant ecological threat. Not much is known about its effects on coral reefs, which serve as vital biodiversity hotspots and climate refuges. This study revealed bioaccumulation of Pb in the organism of two stony coral species, Stylophora pistillata and Pocillopora verrucosa, widely studied in the Gulf of Aqaba. Microfocus X-ray fluorescence (XRF) imaging revealed widespread accumulation of Pb within the coral tissues but not in the skeletons. The finding that Pb predominantly accumulates in the soft tissues with no evidence of Pb in the mineral suggests that exposure was short or of low concentration. Both highlight the great sensitivity of coral organisms to Pb uptake, with likely negative impacts on the organism. We suggest that anthropogenic Pb contamination, intensified by factors such as urban runoff or industrial discharges, still poses a serious risk to coral health and resilience despite years of efforts to curb exposure. Future research should focus on the kinetics of Pb bioaccumulation, effects of short-term versus long-term exposure and the combined effects of heavy metals and temperature on coral physiology.

看到看不见的东西:XRF揭示了在红海(亚喀巴湾)生长的珊瑚生物中铅的分布。
海洋生态系统中的铅污染构成了重大的生态威胁。人们对它对珊瑚礁的影响知之甚少,珊瑚礁是重要的生物多样性热点和气候避难所。本研究揭示了亚喀巴湾被广泛研究的两种石珊瑚(柱头珊瑚和疣珊瑚)体内铅的生物积累。微聚焦x射线荧光(XRF)成像显示铅在珊瑚组织中广泛积累,但在骨骼中没有。发现铅主要积聚在软组织中,而矿物中没有铅的证据表明暴露时间短或浓度低。两者都突出了珊瑚生物对铅吸收的高度敏感性,可能对生物产生负面影响。我们认为,人为的铅污染,由城市径流或工业排放等因素加剧,尽管多年来努力控制暴露,仍然对珊瑚的健康和恢复能力构成严重风险。未来的研究应集中在Pb生物积累动力学、短期与长期暴露的影响以及重金属和温度对珊瑚生理的综合影响等方面。
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来源期刊
Faraday Discussions
Faraday Discussions 化学-物理化学
自引率
0.00%
发文量
259
期刊介绍: Discussion summary and research papers from discussion meetings that focus on rapidly developing areas of physical chemistry and its interfaces
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