Molecular cloning and transcriptional expression analysis of an intracellular beta-glucosidase, a family 3 glycosyl hydrolase, from the edible straw mushroom, Volvariella volvacea

文献类型: 外文期刊

第一作者: Ding, Shaojun

作者: Ding, Shaojun;Ge, Wei;Buswell, John A.

作者机构:

关键词: beta-glucosidase;cellulase gene expression;intracellular;Volvariella volvacea;TRICHODERMA-REESEI QM-9414;CELLULOLYTIC SYSTEM;PHANEROCHAETE-CHRYSOSPORIUM;CELLULASE COMPLEX;ENDOGLUCANASE-I;CELL-WALLS;BGL1 GENE;PURIFICATION;INDUCTION;DEGRADATION

期刊名称:FEMS MICROBIOLOGY LETTERS ( 影响因子:2.742; 五年影响因子:2.856 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: A beta-glucosidase, with a molecular mass of 95 kDa, was isolated from extracts of Volvariella volvacea mycelium grown on crystalline cellulose. Degenerate primers based on the N-terminal sequences of purified beta-glucosidase and two protease-generated peptides were used to generate cDNA fragments encoding a portion of the beta-glucosidase gene (bgl), and rapid amplification of cDNA ends was used to obtain full-length cDNA clones. The cDNA of bgl contained an ORF of 2586 bp coding for 862 amino acids. Alignment of the deduced amino-acid sequence of beta-glucosidase with deduced amino acid sequences of other microbial beta-glucosidases showed the highest overall homology with glycoside hydrolase family 3 beta-glucosidases from fungi. Transcripts of bgl were detected in total RNA extracted from mycelium grown on cellulose and cellobiose, and from mycelium pre-grown for 72 h in basal medium containing 1% (w/v) sorbitol following addition of alpha-lactose, beta-lactose, cellobiose, D- xylose, L-sorbose, beta-gentiobiose, sophorose or D-galactose. Addition of L-sorbose and D-glucosamine to mycelium grown on 1% (w/v) crystalline cellulose greatly increased the level of bgl expression. bgl Was expressed at various stages of the mushroom developmental cycle (substrate colonization to mature fruit body), although the number of bgl transcripts in pinhead and button stages was slightly smaller.

分类号: Q93

  • 相关文献

[1]Cloning of multiple cellulase cDNAs from Volvariella volvacea and their differential expression during substrate colonization and fruiting. Ding, Shaojun,Ge, Wei,Buswell, John A..

[2]Comparison of endoglucanase-1 (EG1) induction in the edible straw mushroom Volvariella volvacea by lactose and/or cellobiose with or without added sorbose. Zhang, Liang,Pei, Yun,Ding, Shaojun,Xing, Zengtao,Buswell, John A..

[3]Overexpression of celB gene coding for beta-glucosidase from Pyrococcus furiosus using a baculovirus expression vector system in silkworm, Bombyx mori. Lin, Xu'Ai,Zhang, Wei,Chen, Yin,Bin Yao,Zhang, Zhi Fang.

[4]A Thermophilic Cellulase Complex from Phialophora sp G5 Showing High Capacity in Cellulose Hydrolysis. Zhao, Junqi,Shi, Pengjun,Bai, Yingguo,Huang, Huoqing,Luo, Huiying,Xu, Donghao,Wang, Yaru,Yao, Bin,Zhang, Huitu. 2012

[5]CharacterizationofmousebrainmicroRNAsafterinfectionwithcyst-formingToxoplasmagondii. 徐民俊,DonghuiZhou,AlasdairJ.Nisbet,SiyangHuang,YifanFan,XingquanZhu. 2013

[6]A specific type of cyclin-like F-box domain gene is involved in the cryogenic autolysis of Volvariella volvacea. Gong, Ming,Chen, Mingjie,Wang, Hong,Tan, Qi,Gong, Ming,Zhu, Qiuming.

[7]A newly discovered ubiquitin-conjugating enzyme E2 correlated with the cryogenic autolysis of Volvariella volvacea. Gong, Ming,Wang, Hong,Chen, Mingjie,Bao, Dapeng,Tan, Qi,Gong, Ming,Zhu, Qiuming.

[8]Improved fruiting of the straw mushroom (Volvariella volvacea) on cotton waste supplemented with sodium acetate. Hou, Lijuan,Li, Yu,Chen, Mingjie,Li, Zhengpeng. 2017

[9]Application of mating type genes in molecular marker-assisted breeding of the edible straw mushroom Volvariella volvacea. Wang, Hong,Chen, Mingjie,Xue, Chengqin,Li, Zhengpeng,Bao, Dapeng,Wang, Hong,Chen, Mingjie,Xue, Chengqin,Li, Zhengpeng,Bao, Dapeng,Wang, Hong,Chen, Mingjie,Xue, Chengqin,Li, Zhengpeng,Bao, Dapeng,Xiong, Dengkun,Wang, Hong,Chen, Mingjie,Xue, Chengqin,Li, Zhengpeng,Bao, Dapeng,Xiong, Dengkun,Bian, Yinbing.

[10]Analysis of synonymous codon usage patterns in the edible fungus Volvariella volvacea. Jiang, Wei,Lv, Beibei,Wu, Xiao,Wang, Jinbin,Wu, Guogan,Tang, Xueming,Jiang, Wei,Lv, Beibei,Wu, Xiao,Wang, Jinbin,Wu, Guogan,Tang, Xueming,Shi, Chunhui.

[11]Molecular Cloning, Sequencing, and Expression of a l-Glutamine d-Fructose 6-Phosphate Amidotransferase Gene from Volvariella volvacea. Luo, Chuping,Chen, Zhiyi,Liu, Yongfeng,Luo, Chuping,Shao, Weilan,Li, Xun,Li, Xun. 2009

[12]A new approach for breeding low-temperature-resistant Volvariella volvacea strains: Genome shuffling in edible fungi. Zhu, Ziping,Wu, Xiao,Lv, Beibei,Wu, Guogan,Wang, Jinbin,Jiang, Wei,Li, Peng,He, Jianhua,Chen, Jianzhong,Tang, Xueming,Zhu, Ziping,Wu, Xiao,Lv, Beibei,Wu, Guogan,Wang, Jinbin,Jiang, Wei,Li, Peng,He, Jianhua,Chen, Jianzhong,Tang, Xueming,Chen, Mingjie,Bao, Dapeng,Zhang, Jinsong,Tan, Qi.

[13]Purification and characterization of beta-glucosidase from newly isolated Aspergillus sp MT-0204. Qi, Bin,Liu, Xianjin,Qi, Bin,Wang, Limei. 2009

[14]Biosurfactant-Protein Interaction: Influences of Mannosylerythritol Lipids-A on beta-Glucosidase. Wang, Ying,Huang, Zisu,Zhou, Jianzhong,Xie, Pujun. 2018

[15]Biochemical and kinetic characterization of the multifunctional beta-glucosidase/beta-xylosidase/alpha-arabinosidase, Bgxa1. Gruninger, R. J.,Gong, X.,Forster, R. J.,McAllister, T. A.,Gong, X.. 2014

[16]Isolation of a maize beta-glucosidase gene promoter and characterization of its activity in transgenic tobacco. Gu, Riliang,Zhao, Li,Zhang, Ying,Chen, Xiaoping,Bao, Juan,Zhao, Jinfeng,Wang, Zhangying,Fu, Junjie,Liu, Tingsong,Wang, Jianhua,Wang, Guoying. 2006

[17]Hydrolysis of glycosidically bound volatiles from apple leaves (cv. Anna) by Aspergillus niger beta-glucosidase affects the behavior of codling moth (Cydia pomonella L.). Wei, S,Reuveny, H,Bravdo, BA,Shoseyov, O. 2004

[18]Engineering a highly active thermophilic beta-glucosidase to enhance its pH stability and saccharification performance. Xia, Wei,Shi, Pengjun,Bai, Yingguo,Luo, Huiying,Ma, Rui,Yao, Bin,Xia, Wei,Qian, Lichun,Xu, Xinxin. 2016

[19]Revisiting overexpression of a heterologous beta-glucosidase in Trichoderma reesei: fusion expression of the Neosartorya fischeri Bgl3A to cbh1 enhances the overall as well as individual cellulase activities. Xue, Xianli,Ma, Rui,Luo, Huiying,Su, Xiaoyun,Yao, Bin,Wu, Yilan,Qin, Xing. 2016

[20]Separation and Identification of Anthocyanins Extracted from Blueberry Wine Lees and Pigment Binding Properties toward beta-Glucosidase. Wu, Qian,Wang, Chao,Zhang, Yang,Chen, Yashu,Xie, Bijun,Sun, Zhida,Tang, Hu.

作者其他论文 更多>>