极端微生物热点与在深海盆地倾倒的集装箱工业废物有关。

IF 3.8 Q2 MULTIDISCIPLINARY SCIENCES
PNAS nexus Pub Date : 2025-09-09 eCollection Date: 2025-09-01 DOI:10.1093/pnasnexus/pgaf260
Johanna Gutleben, Sheila Podell, Kira Mizell, Douglas Sweeney, Carlos Neira, Lisa A Levin, Paul R Jensen
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引用次数: 0

摘要

与滴滴涕污染有关的海底腐桶引起了人们对在洛杉矶海岸倾倒数十年的工业废料对公众健康的影响的担忧。为了探索它们的内容,我们收集了垂直于五个深海桶的沉积物岩心。滴滴涕及其分解产物的浓度相对于控制地点高度升高,但不随距离桶的远近而变化,这表明它们与污染无关。通过三个桶周围的白色晕收集的沉积物岩心富含方解石,ph值升高。相关的微生物群落多样性低,以嗜碱细菌为主,这些细菌具有适应高ph值的宏基因组组装基因组。在白色晕和桶之间取样的固体结核由水镁石组成,这是一种高ph下形成的氢氧化镁矿物。我们假设,容器化碱性废物的泄漏引发了矿物结块的形成,这些矿物结块缓慢溶解并提高了周围沉积物孔隙水的pH值。这选择了适应极端碱性的分类群,并驱动“人为”碳酸盐的沉淀,形成白色的光环,作为含有碱性废物的桶的视觉标识。值得注意的是,50年前丢弃的容器碱性废物代表了一种持久性污染物,产生了类似于在某些热液系统中观察到的局部矿物形成和微生物群落。在圣佩德罗盆地三分之一的目测桶中观察到这些地层,并对该地区的底栖生物群落产生了不可预见的长期影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extremophile hotspots linked to containerized industrial waste dumping in a deep-sea basin.

Decaying barrels on the seafloor linked to DDT contamination have raised concerns about the public health implications of decades old industrial waste dumped off the coast of Los Angeles. To explore their contents, we collected sediment cores perpendicular to five deep-sea barrels. The concentration of DDT and its breakdown products were highly elevated relative to control sites yet did not vary with distance from the barrels, suggesting that they were not associated with the contamination. Sediment cores collected through white halos surrounding three barrels were enriched in calcite and had elevated pH. The associated microbial communities were low diversity and dominated by alkalophilic bacteria with metagenome-assembled genomes adapted to high pH. A solid concretion sampled between a white halo and barrel was composed of brucite, a magnesium hydroxide mineral that forms at high pH. Based on these findings, we postulate that leakage of containerized alkaline waste triggered the formation of mineral concretions that are slowly dissolving and raising the pH of the surrounding sediment pore water. This selects for taxa adapted to extreme alkalinity and drives the precipitation of "anthropogenic" carbonates forming white halos, which serve as a visual identifier of barrels that contained alkaline waste. Remarkably, containerized alkaline waste discarded >50 years ago represents a persistent pollutant creating localized mineral formations and microbial communities that resemble those observed at some hydrothermal systems. These formations were observed at one-third of the visually identified barrels in the San Pedro Basin and have unforeseen, long-term consequences for benthic communities in the region.

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