太平洋深海中巨大的、高度多样化的原生生物:易受海底采矿的影响和恢复的潜力。

Q2 Agricultural and Biological Sciences
Andrew J Gooday, Jennifer M Durden, Craig R Smith
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引用次数: 12

摘要

在赤道东太平洋Clarion-Clipperton带,巨型深海粘连有孔虫是底栖巨型动物的主要组成部分。这个深海(>4000米深)区域拥有多金属结核的主要矿床,这些多金属结核是未来海底采矿的目标,这种活动将破坏这些高度多样化和脆弱的原生生物,特别是那些生活在结核上的原生生物。由于细胞只占其测试体积的一小部分,因此对底栖生物生物量和碳循环的贡献可能相当有限。然而,植体试验可以被动地增强颗粒沉积,浓缩食物,并提供多种生物利用的栖息地结构。因此,它们的破坏可能会影响底栖生物群落的恢复。需要结核基质的物种很可能无法恢复,因为结核需要数百万年才能形成。然而,异形藻可以快速生长,并在几年内占领广泛的火山灰沉积物,这表明沉积物栖息物种可能是第一批在采矿影响地区重新出现的大型不可移动生物之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Giant, highly diverse protists in the abyssal Pacific: vulnerability to impacts from seabed mining and potential for recovery.

Giant, highly diverse protists in the abyssal Pacific: vulnerability to impacts from seabed mining and potential for recovery.

Giant, highly diverse protists in the abyssal Pacific: vulnerability to impacts from seabed mining and potential for recovery.

Giant, highly diverse protists in the abyssal Pacific: vulnerability to impacts from seabed mining and potential for recovery.

Xenophyophores, giant deep-sea agglutinated foraminifera, dominate the benthic megafauna in the eastern equatorial Pacific Clarion-Clipperton Zone. This abyssal (>4000 m depth) region hosts major deposits of polymetallic nodules targeted for future seabed mining, an activity that would destroy these highly diverse and delicate protists, particularly those living on the nodules themselves. Since the cell occupies only a small proportion of their test volume, xenophyophores may make a fairly modest contribution to benthic biomass and carbon cycling. Nevertheless, xenophyophore tests can passively enhance particle deposition, concentrate food, and provide habitat structure utilized by diverse organisms. Their destruction could therefore influence the recovery of benthic communities. Species requiring nodule substrates will likely not recover, since nodules take millions of years to form. However, xenophyophores can grow quickly and colonize extensive volcanic ash deposits within years, suggesting that sediment-dwelling species could be among the first large immobile organisms to reappear in mining-impacted areas.

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来源期刊
Communicative and Integrative Biology
Communicative and Integrative Biology Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
3.50
自引率
0.00%
发文量
22
审稿时长
6 weeks
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