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光照强度对旋转生物接触器处理海水养殖废水过程中藻菌共生体系脱氮、酶活性及代谢途径的影响

Effect of light intensity on nitrogen removal, enzymatic activity and metabolic pathway of algal-bacterial symbiosis in rotating biological contactor treating mariculture wastewater.

作者信息

Chu Guangyu, Gao Chang, Wang Qianzhi, Zhang Wenchen, Tian Taotao, Chen Wenzheng, Gao Mengchun

机构信息

Key Lab of Marine Environment and Ecology, Ministry of Education, Ocean University of China, Qingdao 266100, China; Shandong Provincial Key Laboratory of Marine Environment and Geological Engineering, Ocean University of China, Qingdao 266100, China; College of Environmental Science and Engineering, Ocean University of China, Qingdao 266100, China.

Key Lab of Marine Environment and Ecology, Ministry of Education, Ocean University of China, Qingdao 266100, China; Shandong Provincial Key Laboratory of Marine Environment and Geological Engineering, Ocean University of China, Qingdao 266100, China.

出版信息

Bioresour Technol. 2025 Feb;417:131872. doi: 10.1016/j.biortech.2024.131872. Epub 2024 Nov 23.

Abstract

An algal-bacterial symbiosis (ABS) system was developed on a rotating biological contactor treating mariculture wastewater, and its nitrogen removal, enzymatic activity and metabolic pathways were investigated under different light intensities. The nitrogen removal efficiency increased when light intensities ranged from 20 to 80 μE/(m·s) but declined under 100 μE/(m·s). Higher enzymatic activities under 80 μE/(m·s) facilitated nitrogen conversion, light utilization, ATP supply and photosynthesis. Reactive oxygen species accumulation activated antioxidant pathways under 20 and 100 μE/(m·s). Functional bacteria including Sedimentitalea, Thauera and Dechloromonas as well as Chlorella sorokinian, Dunaliella, Pleurosira laevis and Microcystis were enriched under 80 μE/(m·s). Abundant photosynthesis-related genes (petC, Lca3/4 and atpH/A) supported energy supply and electron transport. Conversely, lower proportions of IDH3, gltB, and acnA/B under 20 and 100 μE/(m·s) hindered tricarboxylic acid cycle, reducing NADPH and energy production. These results enhance the understanding on the effect of light intensity on ABS system treating mariculture wastewater.

摘要

在旋转生物接触器上开发了一种藻菌共生(ABS)系统用于处理海水养殖废水,并研究了不同光照强度下该系统的脱氮效果、酶活性和代谢途径。当光照强度在20至80 μE/(m·s)范围内时,脱氮效率提高,但在100 μE/(m·s)时下降。80 μE/(m·s)时较高的酶活性促进了氮转化、光利用、ATP供应和光合作用。活性氧积累在20和100 μE/(m·s)时激活了抗氧化途径。在80 μE/(m·s)时,包括沉积杆菌属、陶厄氏菌属和脱氯单胞菌属等功能细菌以及索氏小球藻、杜氏盐藻、光滑侧顶藻和微囊藻被富集。丰富的光合作用相关基因(petC、Lca3/4和atpH/A)支持能量供应和电子传递。相反,在20和100 μE/(m·s)时,IDH3、gltB和acnA/B的比例较低,阻碍了三羧酸循环,减少了NADPH和能量产生。这些结果增进了对光照强度对ABS系统处理海水养殖废水效果的理解。

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