文献类型: 外文期刊
作者: Yu, Man 1 ; Zhang, Jiachao 2 ; Xu, Yuxin 1 ; Xiao, Hua 1 ; An, Wenhao 1 ; Xi, Hui 1 ; Xue, Zhiyong 1 ; Huang, Hongli 3 ; Che 1 ;
作者机构: 1.Zhejiang Acad Agr Sci, Environm Resources & Soil Fertilizer Inst, Hangzhou 310021, Zhejiang, Peoples R China
2.Hunan Agr Univ, Coll Resources & Environm, Changsha 410128, Hunan, Peoples R China
3.Hunan Agr Univ, Coll Resources & Environm, Changsha 410128,
关键词: Fungal community;Population dynamic;Driving factor;Composting;Redundancy analysis
期刊名称:ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH ( 影响因子:4.223; 五年影响因子:4.306 )
ISSN:
年卷期:
页码:
收录情况: SCI
摘要: This study was conducted to identify the driving factors behind fungal community dynamics during agricultural waste composting. Fungal community abundance and structure were determined by quantitative PCR and denaturing gradient gel electrophoresis analysis combined with DNA sequencing. The effects of physico-chemical parameters on fungal community abundance and structure were evaluated by least significant difference tests and redundancy analysis. The results showed that Cladosporium bruhnei, Hanseniaspora uvarum, Scytalidium thermophilum, Tilletiopsis penniseti, and Coprinopsis altramentaria were prominent during the composting process. The greatest variation in the distribution of fungal community structure was statistically explained by pile temperature and total organic carbon (TOC) (P < 0.05). A significant amount of the variation (74.6 %) was explained by these two parameters alone. Fungal community abundance was found to be significantly related to pH, while pH was significantly influenced by pile temperature and nitrate levels (P < 0.05), and these parameters were found to be the most likely to influence or be influenced by the fungal community during composting.
- 相关文献
作者其他论文 更多>>
-
Reference genome sequence and population genomic analysis of peas provide insights into the genetic basis of Mendelian and other agronomic traits
作者:Liu, Na;Zhang, Xueying;Zhang, Guwen;Feng, Zhijuan;Ou, Jinwen;Wang, Bin;Bu, Yuanpeng;Gong, Yaming;Lyu, Xiaolong;Zhang, Ziqian;Guan, Xueying;Gao, Qiang;Shi, Wanghong;Deng, Yayuan;Sheng, Kuang;Zhu, Yumeng;Zhang, Mingfang;Zhang, Liangsheng;Zhao, Ting;Chen, Xiaoyang;Yang, Xiaoming;Shi, Wanghong;Deng, Yayuan;Zhang, Mingfang;Zhang, Liangsheng
关键词:
-
Fates of nutrients, bacteria community, and antibiotic resistance genes during membrane separation of biogas slurry at industrial scale
作者:Xu, Xing;Xiao, Hua;Zhou, Weidong
关键词:Membrane separation; Biogas slurry; Bacterial community; Antibiotic resistance genes; Nutrient recovery
-
Drip fertigation with food waste biogas effluent in a humid area is possible but challenging due to increased soil soluble sodium
作者:Li, Na;Xi, Hui;Zhou, Yang;Yu, Man;Chen, Xijing;Hu, Zhenhua;Xi, Hui
关键词:Saline water; Soil salinity; SAR; Broccoli
-
Multilayer adsorption of lead (Pb) and fulvic acid by Chlorella pyrenoidosa: Mechanism and impact of environmental factors
作者:Shi, Wen;Xu, Yuxin;Chen, Xijing;Shi, Wen;Li, Feili;Wang, Zhiwei
关键词:Microalgae; Lead; Fulvic acid; Multilayer adsorption; Environmental factor
-
Response of Soil Environment and Microbial Community Structure to Different Ratios of Long-Term Straw Return and Nitrogen Fertilizer in Wheat-Maize System
作者:Yu, Man;Wang, Qingxia;Su, Yao;Xi, Hui;Qiao, Yuying;Wang, Yunlong;Shen, Alin;Guo, Zhanlin;Shen, Alin
关键词:straw return; nitrogen fertilizer; phospholipid fatty acids; high-throughput sequencing; soil health
-
Species-Specific Gene Expansion of the Cellulose synthase Gene Superfamily in the Orchidaceae Family and Functional Divergence of Mannan Synthesis-Related Genes in Dendrobium officinale
作者:Wang, Yunzhu;Zhao, Kunkun;Chen, Yue;Sun, Chongbo;Wei, Qingzhen;Wan, Hongjian;Chen, Xiaoyang
关键词:Cellulose synthase; CesA; Csl; Orchidaceae; gene expansion; polysaccharide synthesis
-
Characterization of repetitive sequences in Dendrobium officinale and comparative chromosomal structures in Dendrobium species using FISH
作者:Wang, Yunzhu;Chen, Yue;Sun, Chongbo;Wei, Qingzhen;Wan, Hongjian;Chen, Xiaoyang
关键词:Dendrobium; Repetitive DNAs; Chromosome structure; Fluorescence in situ hybridization (FISH); Evolution