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丝状蓝藻在好氧光合颗粒形成中的重要性。

The importance of filamentous cyanobacteria in the development of oxygenic photogranules.

机构信息

LBE, Univ Montpellier, INRA, 102 Avenue des étangs, 11100, Narbonne, France.

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

出版信息

Sci Rep. 2017 Dec 20;7(1):17944. doi: 10.1038/s41598-017-16614-9.

Abstract

Microorganisms often respond to their environment by growing as densely packed communities in biofilms, flocs or granules. One major advantage of life in these aggregates is the retention of its community in an ecosystem despite flowing water. We describe here a novel type of granule dominated by filamentous and motile cyanobacteria of the order Oscillatoriales. These bacteria form a mat-like photoactive outer layer around an otherwise unconsolidated core. The spatial organization of the phototrophic layer resembles microbial mats growing on sediments but is spherical. We describe the production of these oxygenic photogranules under static batch conditions, as well as in turbulently mixed bioreactors. Photogranulation defies typically postulated requirements for granulation in biotechnology, i.e., the need for hydrodynamic shear and selective washout. Photogranulation as described here is a robust phenomenon with respect to inoculum characteristics and environmental parameters like carbon sources. A bioprocess using oxygenic photogranules is an attractive candidate for energy-positive wastewater treatment as it biologically couples CO and O fluxes. As a result, the external supply of oxygen may become obsolete and otherwise released CO is fixed by photosynthesis for the production of an organic-rich biofeedstock as a renewable energy source.

摘要

微生物通常通过在生物膜、絮体或颗粒中密集生长的方式来适应环境。在这些聚集体中生活的一个主要优势是,尽管有水流,其群落仍能在生态系统中得以保留。我们在这里描述了一种新型的颗粒,其主要由丝状体和运动性蓝藻中的 Oscillatoriales 目组成。这些细菌在未固结的核心周围形成一层类似垫子的光活性外层。光养层的空间组织类似于在沉积物上生长的微生物垫,但呈球形。我们描述了在静态分批条件下以及在湍流混合生物反应器中产生这些含氧光颗粒的情况。光颗粒化违反了生物技术中通常假定的颗粒化要求,即需要水动力剪切和选择性冲洗。与接种物特性和环境参数(如碳源)相比,这里描述的光颗粒化是一种稳健的现象。使用含氧光颗粒的生物工艺是一种有吸引力的废水处理方法,因为它可以生物偶联 CO 和 O 通量。结果,外部氧气供应可能变得多余,否则释放的 CO 通过光合作用固定,用于生产富含有机物质的生物原料,作为可再生能源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/486b/5738420/a698e145a4e8/41598_2017_16614_Fig1_HTML.jpg

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