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作 者:张晨阳 滕齐辉 曹滢 崔中利[1] 李顺鹏[1] 曹慧[1] ZHANG Chenyang;TENG Qihui;CAO Ying;CUI Zhongli;LI Shunpeng;CAO Hui(Key Laboratory of Agricultural Environmental Microbiology,Ministry of Agriculture,College of Life Science,Nanjing Agricultural University,Nanjing 210095,China)
机构地区:[1]南京农业大学生命科学学院/农业农村部农业环境微生物工程重点实验室,南京210095
出 处:《土壤》2021年第1期72-79,共8页Soils
基 金:国家自然科学基金项目(41371262,40871125)资助。
摘 要:为了解有机肥施用对于红壤中反硝化细菌群落结构的影响,设置了4个处理:CK(不施肥)、LM(低量有机肥)、ML(高量有机肥+石灰)和HM(高量有机肥)进行研究,并通过末端限制性片段长度多态性(T-RFLP)和克隆文库的DNA测序估计了nirK基因的多样性。结果表明:各处理分别挑选的288个阳性克隆子可分为78个类型,各处理nirK文库中的优势类群属于同一种类型,在CK处理中的占比为51%,在其他3个处理中的占比依次为33%、32%和27%。4个文库之间两两的相似性在37.50%~45.34%,系统进化树分析表明,51个OTUs测序结果中6个OTUs与苍白杆菌属的相似性最高,占测序总数的11.8%;其余45个OTUs属于未培养类型,占测序总数的88.2%。有机肥添加有助于提高nirK基因的多样性,并且出现了红壤原始环境中未出现的反硝化细菌类型。In order to understand the effect of organic manure application on the structure of denitrifying bacteria in red soil,four treatments were designed and compared:1)CK,no manure;2)LM,low organic manure;3)ML,high organic manure+lime;and 4)HM,high amount organic manure.The diversity of the nirK gene was estimated by terminal restriction fragment length polymorphism(T-RFLP)and DNA sequencing of the cloned library.The results showed that the 288 clones selected in each treatment can be divided into 78 clusters,and the dominant groups in each nirK library were of the same cluster,accounting for 51%of the CK,while the other three treatments were 33%,32%and 27%,respectively.The similarity between the four libraries was between 37.50%and 45.34%.The phylogenetic tree analysis of the 51 OTUs showed that 6 OTUs had the highest similarity with Ochrobactrum sp.,accounting for 11.8%of the total number of sequencing.The remaining 45 OTUs belonged to the uncultured cluster,accounting for 88.2%of the total number of sequencing.Organic manure addition increased the diversity of the nirK gene,but some types of denitrifying bacteria didn’t appear in the original red soil environment.
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