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揭示光粒化作用对冰川反照率降低和净自养废水处理的影响。

Unmasking photogranulation in decreasing glacial albedo and net autotrophic wastewater treatment.

机构信息

Department of Civil and Environmental Engineering, University of Massachusetts Amherst, Amherst, Massachusetts, 01003, USA.

Department of Earth Sciences, Graduate School of Science, Chiba University, Chiba, 263-8522, Japan.

出版信息

Environ Microbiol. 2021 Nov;23(11):6391-6404. doi: 10.1111/1462-2920.15780. Epub 2021 Sep 28.

Abstract

In both natural and built environments, microbes on occasions manifest in spherical aggregates instead of substratum-affixed biofilms. These microbial aggregates are conventionally referred to as granules. Cryoconites are mineral rich granules that appear on glacier surfaces and are linked with expanding surface darkening, thus decreasing albedo, and enhanced melt. The oxygenic photogranules (OPGs) are organic rich granules that grow in wastewater, which enables wastewater treatment with photosynthetically produced oxygen and which presents potential for net autotrophic wastewater treatment in a compact system. Despite obvious differences inherent in the two, cryoconite and OPG pose striking resemblance. In both, the order Oscillatoriales in Cyanobacteria envelope inner materials and develop dense spheroidal aggregates. We explore the mechanism of photogranulation on account of high similarity between cryoconites and OPGs. We contend that there is no universal external cause for photogranulation. However, cryoconites and OPGs, as well as their intravariations, which are all under different stress fields, are the outcome of universal physiological processes of the Oscillatoriales interfacing with goldilocks interactions of stresses. Finding the rules of photogranulation may enhance engineering of glacier and wastewater systems to manipulate their ecosystem impacts.

摘要

在自然和人工环境中,微生物有时会以球形聚集体的形式出现,而不是附着在基质上的生物膜。这些微生物聚集体通常被称为颗粒。冰核颗粒是富含矿物质的颗粒,出现在冰川表面,与表面变暗的扩大有关,从而降低反照率,并促进融化。好氧光合颗粒(OPG)是在废水中生长的富含有机物的颗粒,它利用光合作用产生的氧气进行废水处理,并为在紧凑系统中实现净自养废水处理提供了潜力。尽管两者之间存在明显的差异,但冰核颗粒和 OPG 具有惊人的相似之处。在这两者中,蓝藻中的颤藻目都包裹着内部物质,并形成密集的球形聚集体。我们探索了光颗粒化的机制,因为冰核颗粒和 OPG 之间具有高度相似性。我们认为,光颗粒化没有普遍的外部原因。然而,冰核颗粒和 OPG 以及它们在不同压力场下的内部变化,都是颤藻目与压力的黄金互动界面的普遍生理过程的结果。发现光颗粒化的规律可以增强对冰川和废水系统的工程设计,以控制它们对生态系统的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d25d/9292683/91927039196d/EMI-23-6391-g007.jpg

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