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Variations in microbial community during nitrogen removal by in situ oxygen-enhanced indigenous nitrogen-removal bacteria 被引量:8
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作者 Shi-lei Zhou Yue Sun +4 位作者 Yi-ran Zhang Ting-lin Huang Zai-xing Li Kai-kai Fang Chun-hua Zhang 《Water Science and Engineering》 EI CAS CSCD 2018年第4期276-287,共12页
In this study, the enclosure system exhibited perfect nitrogen removal performance with in situ oxygen-enhanced indigenous aerobic denitrifying bacteria in an enclosure experiment. We explored changes in the microbial... In this study, the enclosure system exhibited perfect nitrogen removal performance with in situ oxygen-enhanced indigenous aerobic denitrifying bacteria in an enclosure experiment. We explored changes in the microbial community during the nitrogen removal process using the MiSeq high-throughput sequencing technology. The results revealed a total of 7974 and 33653 operational taxonomic units(OTUs) for water and sediment systems, respectively, with 97% similarity. The OTUs were found to be affiliated with eight main phyla(Proteobacteria, Actinobacteria, Cyanobacteria, Bacteroidetes, Planctomycetes, Chloroflexi, Firmicutes, and Actinobacteria). The diversity of the enhanced system was found to be higher than that of the control system. Principal component analysis(PCA) revealed that significant spatial and temporal differences were exhibited in the microbial community during nitrogen removal in the enclosure experiment. Redundancy analysis(RDA)indicated that physical parameters(temperature, dissolved oxygen, and pH), nitrogen(total nitrogen and nitrate), functional genes(nirK and nirS), and dissolved organic carbon(DOC) were the most important factors affecting bacterial community function and composition. Lastly, the results suggested that the variation in the microbial community could be analyzed through the MiSeq high-throughput sequencing technology,which may provide technical support for future field tests. 展开更多
关键词 Nitrogen removal miseq high-throughput sequencing technology In situ enclosure RDA Drinking water reservoir
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复合微生物菌肥KMM减缓苹果再植病害机制
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作者 于松涛 张铭一 +3 位作者 陈蕊 李波 曹克强 王树桐 《植物保护学报》 CAS CSCD 北大核心 2024年第2期352-360,共9页
为揭示木美土里复合微生物菌肥(Kimidori microbial manure,KMM)促进再植苹果树的生长及减缓苹果再植病的作用机制,采用土壤常规农业化学分析法和Illumma MiSeq高通量测序技术比较分析KMM和常规有机肥(对照)处理后再植苹果树的生长指标... 为揭示木美土里复合微生物菌肥(Kimidori microbial manure,KMM)促进再植苹果树的生长及减缓苹果再植病的作用机制,采用土壤常规农业化学分析法和Illumma MiSeq高通量测序技术比较分析KMM和常规有机肥(对照)处理后再植苹果树的生长指标、理化因子、根际土壤酶活性以及细菌群落结构和功能的变化。结果表明,施用KMM后,果树的株高增长率、干径增长率、叶绿素含量、分枝个数和分枝长度等生长指标均显著升高,有机质含量显著增加,中性磷酸酶、脲酶、蔗糖酶和过氧化氢酶活性均显著提高,同时增加了再植土壤细菌群落的丰富度和多样性。从采集土壤中分离得到51株细菌并进行盆栽试验,其中经KMM-15、KMM-37和KMM-50菌株处理后海棠苗叶绿素含量、株高、茎粗均显著提高,经鉴定这3株菌株为贝莱斯芽胞杆菌Bacillus velezensis。表明春秋2次施用KMM提高了土壤有机质含量和酶活性,并重塑了根际土壤中细菌群落结构,进而缓解苹果再植病害发生程度,促进果树生长。 展开更多
关键词 苹果再植病害 复合微生物菌肥 KMM 生物防治 illumma miseq高通量测序 细菌群落结构
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