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聚磷菌及其碳源代谢特征的研究进展
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作者 郑茜匀 许轲桐 +8 位作者 贺继涛 车奇睿 郑怡华 郑海欣 袁婧 陈航 陈丽萍 韦朝海 邱光磊 《环境工程》 2025年第3期22-41,共20页
聚磷菌(PAOs)是强化生物除磷系统(EBPR)的关键功能微生物,其在厌氧条件下摄取碳源,在好氧条件下进行除磷。近年来,随着人们对聚磷菌研究增多,发现不同聚磷菌对碳源摄取的偏好及代谢机制有所差异。重点综述与总结了典型聚磷菌Candidatus ... 聚磷菌(PAOs)是强化生物除磷系统(EBPR)的关键功能微生物,其在厌氧条件下摄取碳源,在好氧条件下进行除磷。近年来,随着人们对聚磷菌研究增多,发现不同聚磷菌对碳源摄取的偏好及代谢机制有所差异。重点综述与总结了典型聚磷菌Candidatus Accumulibacter、Dechloromonas、Tetrasphaera和Microlunatus phosphovorus对乙酸、氨基酸、糖类等碳源的摄取偏好与代谢机制,系统介绍了不同碳源条件下聚磷菌、聚糖菌以及不同聚磷菌间的相互作用关系。在EPBR系统中,使用特定碳源或交替使用不同碳源、利用聚磷菌和聚糖菌碳源摄取生物能量学机制差异进行碳源供给速率的调控,是实现聚磷菌的种群优势的重要且有效的方式;对聚磷菌多碳源耦合代谢机制的揭示为EBPR系统减碳提供了基础;Candidatus Accumulibacter和Tetrasphaera间存在对氨基酸的竞争摄取关系;二者之间的相互作用关系取决于Tetrasphaera在厌氧发酵过程中释放的发酵产物;Tetrasphaera和Microlunatus phosphovorus在葡萄糖和氨基酸作为碳源条件下的相互作用关系尚不明确;糖类作为EBPR系统碳源的有效性仍需进一步研究。 展开更多
关键词 聚磷菌 Candidatus Accumulibacter dechloromonas Tetrasphaera Microlunatus phosphovorus 碳源
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一株高氯酸盐降解菌的分离及特征 被引量:6
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作者 彭银仙 吴春笃 +2 位作者 宁德刚 陈传祥 郭静 《江苏大学学报(自然科学版)》 EI CAS 北大核心 2010年第2期225-229,共5页
利用选择性培养基从ClO4-污染的底泥样品中分离到一株具有ClO4-还原能力的细菌JD15.对其细胞形态、结构、生理特征、16S rDNA和ClO4-还原酶α亚基基因片段pcrA的编码序列分析表明,该菌株为革兰氏阴性的短杆菌,微好氧;16S rDNA序列Dechlo... 利用选择性培养基从ClO4-污染的底泥样品中分离到一株具有ClO4-还原能力的细菌JD15.对其细胞形态、结构、生理特征、16S rDNA和ClO4-还原酶α亚基基因片段pcrA的编码序列分析表明,该菌株为革兰氏阴性的短杆菌,微好氧;16S rDNA序列Dechloromonas sp.SIUL(AF170356.1)的相似性为100%,将其命名为Dechloromonas sp.JD15.该菌株的最适条件为t=25℃,pH=7;能够在ρ(ClO4-)=5×10-3~5×103mg.L-1的培养基上生长;在含0.5~10 mg.L-1的ClO4-培养基中分别培养4 d和30 d后,ClO4-的降解率分别大于50%和80%,表明该菌株可去除环境中的ClO-,具有潜在的应用价值. 展开更多
关键词 高氯酸盐 dechloromonas SP 分离 鉴定 污染
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The difference of morphological characteristics and population structure in PAO and DPAO granular sludges 被引量:8
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作者 Geumhee Yun Hansaem Lee +3 位作者 Yongsuk Hong Sungpyo Kim Glen T.Daigger Zuwhan Yun 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2019年第2期388-402,共15页
We examined how long-term operation of anaerobic–oxic and anaerobic–anoxic sequencing batch reactors(SBRs) affects the enhanced biological phosphorus removal(EBPR)performance and sludge characteristics. The microbia... We examined how long-term operation of anaerobic–oxic and anaerobic–anoxic sequencing batch reactors(SBRs) affects the enhanced biological phosphorus removal(EBPR)performance and sludge characteristics. The microbial characteristics of phosphorus accumulating organism(PAO) and denitrifying PAO(DPAO) sludge were also analyzed through a quantitative analysis of microbial community structure. Compared with the initial stage of operation characterized by unstable EBPR, both PAO and DPAO SBR produced a stable EBPR performance after about 100-day operation. From day 200 days(DPAO SBR)and 250 days(PAO SBR) onward, sludge granulation was observed, and the average granule size of DPAO SBR was approximately 5 times larger than that of PAO SBR. The DPAO granular sludge contained mainly rod-type microbes, whereas the PAO granular sludge contained coccus-type microbes. Fluorescence in situ hybridization analysis revealed that a high ratio of Accumulibacter clade I was found only in DPAO SBR, revealing the important role of this organism in the denitrifying EBPR system. A pyrosequencing analysis showed that Accumulibacter phosphatis was present in PAO sludge at a high proportion of 6%,whereas it rarely observed in DPAO sludge. Dechloromonas was observed in both PAO sludge(3.3%) and DPAO sludge(3.2%), confirming that this organism can use both O_2 and NO_3^- as electron acceptors. Further, Thauera spp. was identified to have a new possibility as denitrifier capable of phosphorous uptake under anoxic condition. 展开更多
关键词 Accumulibacter phosphatis dechloromonas GRANULATION PYROSEQUENCING THAUERA
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