Citrus Segment Degradation Potential, Enzyme Safety Evaluation, and Whole Genome Sequence of Aspergillus aculeatus Strain ZC-1005
文献类型: 外文期刊
第一作者: Wang, Jieyi
作者: Wang, Jieyi;Hu, Xiao;Li, Gaoyang;Fu, Fuhua;Guo, Jiajing;Shan, Yang;Gao, Zhipeng;Qian, Yujiao;Li, Gaoyang;Fu, Fuhua;Guo, Jiajing;Shan, Yang
作者机构:
关键词: Aspergillus aculeatus ZC-1005; degradation; safety evaluation; genome sequencing; xylanase
期刊名称:FRONTIERS IN MICROBIOLOGY ( 影响因子:5.64; 五年影响因子:6.32 )
ISSN:
年卷期: 2021 年 12 卷
页码:
收录情况: SCI
摘要: Aspergillus aculeatus ZC-1005 (ZC-1005 was used as the abbreviation of this strain) is a hemicellulase-producing strain isolated from rotten citrus rind buried in the soil. Our previous study has shown its biochemical properties including high xylanase activity, mannanase activity, and degradation reaction with citrus mesocarp. In this study, we focused more on the enzyme safety evaluation and the genome sequencing via PacBio and Illumina platforms. High biological safety of the crude enzymes of ZC-1005 has been proven by the acute oral toxicity test, sub-chronic toxicity test, micronucleus test, and sperm malformation test. The genome of ZC-1005 had a GC content of 52.53%, with a size of 35,458,484 bp, and encoded 10,147 genes. Strain ZC-1005 harbored 269 glycosyl hydrolase (GH) genes of 64 families. The fungus produces cellulose-acting (GH3, GH5, GH12, and GH1) and hemicellulose-acting enzymes (GH16, GH31, GH2, and GH92). In genome annotation, we paid more attention to the genes encoding xylanase, such as gene 01512, gene 05833, gene 05469, gene 07781, gene 08432, gene 09042, gene 08008, and gene 09694. The collaboration between complete genome information and the degradation test confirmed that ZC-1005 could degrade cellulose and xylan. Our results showed that the citrus enzymatic decapsulation technology was efficacious and safe for canned citrus product processing, which may also solve the industrial waste problem. Therefore, ZC-1005 and the crude enzyme secreted from the strain were very promising to be used in the citrus processing industry.
分类号:
- 相关文献
作者其他论文 更多>>
-
Bioinspired Janus starch film with dual functionality via citral nanoemulsion-mediated interfacial self-assembly for fresh-cut fruits and vegetables preservation
作者:Xie, Ying;Ding, Ke;Zhang, Shikai;Xu, Saiqing;Li, Huan;Lin, Shuhua;Shan, Yang;Ding, Shenghua;Xie, Ying;Ding, Ke;Xu, Saiqing;Shan, Yang;Ding, Shenghua;Sun, Yuying;Li, Yawen;Wang, Rongrong
关键词:Starch film; Janus structure; Rapid self-assembly; Fresh-cut fruits and vegetables preservation
-
Microbes: Drivers of Chenpi manufacturing, biotransformation, and physiological effects
作者:Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Shan, Yang;Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Guo, Jiajing;Shan, Yang;Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Guo, Jiajing;Shan, Yang;Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Guo, Jiajing;Shan, Yang;Gao, Zhipeng
关键词:Chenpi; Manufacturing; Biotransformation; Physiological effects; Microbiome; Applications
-
Effects of rolling on eating quality, starch structure, and water distribution in cooked indica rice dough
作者:Xiong, Ying;Zhang, Yu;Yi, Cuiping;Zhu, Hong;Zhang, Yu;Shan, Yang;Fang, Zhongxiang
关键词:rolling process; cooked rice dough; sheeting; starch structure; water status
-
Delaying quality deterioration with multifunctional gelatin-based film by inhibiting microbial growth in fresh-cut navel oranges
作者:Xie, Ying;Xu, Saiqing;Ding, Ke;Xu, Haishan;Qiao, Xinbei;Tang, Qi;Shan, Yang;Ding, Shenghua;Xie, Ying;Xu, Saiqing;Ding, Ke;Xu, Haishan;Qiao, Xinbei;Tang, Qi;Wang, Zijun;Shan, Yang;Ding, Shenghua;Yang, Haiying;Wang, Rongrong;Wang, Zijun;Xu, Yanqun;Ding, Shenghua
关键词:Fresh-cut navel oranges; Multifunctional gelatin-based film; Flavor; Microbial community; Correlation analysis
-
Dynamic changes in the chemical structure and gelling properties of pectin at different stages of citrus maturation and storage
作者:Du, Yuyi;Zhao, Chengying;Wang, Jirong;Zheng, Jinkai;Bao, Yuming;Shan, Yang;Zheng, Jinkai
关键词:Citrus; Pectin; Maturity and storage; Chemical structure; Gelling properties
-
Engineering Saccharomyces cerevisiae for De Novo Biosynthesis of 3′-Hydroxygenistein
作者:Tan, Xinjia;Xiao, Zhiqiang;Zhang, Siqi;Wang, Yongtong;Zhao, Yifei;Lu, Qiyuan;Hu, Fanglin;Zuo, Shasha;Shan, Yang;Tan, Xinjia;Xiao, Zhiqiang;Zhang, Siqi;Wang, Yongtong;Zhao, Yifei;Lu, Qiyuan;Hu, Fanglin;Zuo, Shasha;Liu, Juan;Shan, Yang;Tan, Xinjia;Xiao, Zhiqiang;Zhang, Siqi;Wang, Yongtong;Zhao, Yifei;Lu, Qiyuan;Hu, Fanglin;Zuo, Shasha;Liu, Juan;Shan, Yang;Mao, Jiwei
关键词:3 '-hydroxygenistein; genistein; 2-hydroxyisoflavanonesynthase; Saccharomyces cerevisiae; metabolic engineering
-
Sucrose-driven carbon redox rebalancing eliminates the Crabtree effect and boosts energy metabolism in yeast
作者:Xiao, Zhiqiang;Zhao, Yifei;Wang, Yongtong;Tan, Xinjia;Zhang, Siqi;Lu, Qiyuan;Hu, Fanglin;Zuo, Shasha;Shan, Yang;Xiao, Zhiqiang;Zhao, Yifei;Wang, Yongtong;Tan, Xinjia;Zhang, Siqi;Lu, Qiyuan;Hu, Fanglin;Zuo, Shasha;Liu, Juan;Shan, Yang;Xiao, Zhiqiang;Zhao, Yifei;Wang, Yongtong;Tan, Xinjia;Zhang, Siqi;Lu, Qiyuan;Hu, Fanglin;Zuo, Shasha;Liu, Juan;Shan, Yang;Wang, Lian;Wang, Lian;Mao, Jiwei
关键词: