Efficient removal of zinc by multi-stress-tolerant yeast Pichia kudriavzevii A16

文献类型: 外文期刊

第一作者: Li, Chunsheng

作者: Li, Chunsheng;Yu, Jinzhi;Wang, Dongfeng;Xu, Ying;Li, Chunsheng;Li, Laihao;Yang, Xianqing;Ma, Haixia

作者机构:

关键词: Pichia kudriavzevii;Saccharomyces cerevisiae;Zinc bioaccumulation;High salinity;Low pH

期刊名称:BIORESOURCE TECHNOLOGY ( 影响因子:9.642; 五年影响因子:9.237 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Heavy metal bioaccumulation by growing microorganisms is a potential technique for treating the heavy metal pollution in food materials, e.g. fishery processing wastes. In this study, a multi-stress-tolerant yeast with high Zn tolerance and efficient Zn removal ability was screened and renamed as Pichia kudriavzevii A16 after identification. High salinity and low pH obviously increased the Zn bioaccumulation capacity of P. kudriavzevii A16, contributing to the increasing Zn removal rate of P. kudriavzevii A16 at 0.5 mmol/L Zn from 67.69% to 77.03% and 96.09%, respectively. P. kudriavzevii A16 displayed high specificity of Zn removal at high concentrations of Cu, while high concentrations of Cd significantly inhibited the Zn removal by restraining the yeast growth. P. kudriavzevii A16 possessed more powerful Zn removal ability than Saccharomyces cerevisiae CICC1211 under various environmental stresses. The multi-stress-tolerant P. kudriavzevii A16 can be developed into a potential Zn removal agent using in complex food environments. (C) 2016 Elsevier Ltd. All rights reserved.

分类号: Q

  • 相关文献

[1]Isolation and functional characterization of the ShCBF1 gene encoding a CRT/DRE-binding factor from the wild tomato species Solanum habrochaites. Li, Zhenjun,Li, Jingfu,Xu, Xiangyang,Wang, Aoxue,Li, Zhenjun,Zhang, Lili,Wang, Aoxue,Zhang, Lili,Wang, Aoxue,Yao, Quanhong.

[2]Heterologous expression of two Glycine max omega-3 fatty acid desaturases in Saccharomyces cerevisiae. Zhang, H. T.,Bi, Y. P.,Liu, Z. J.,Shan, L.. 2009

[3]A new isolation method of beta-D-glucans from spent yeast Saccharomyces cerevisiae. Liu, Xiao-Yorig,Wang, Qlang,Cui, Steve W.,Liu, Hong-Zhi. 2008

[4]Effect of yeast Saccharomyces cerevisiae supplementation on serum antioxidant capacity, mucosal sIgA secretions and gut microbial populations in weaned piglets. Zhu Cui,Wang Li,Wei Shao-yong,Ma Xian-yong,Zheng Chun-tian,Jiang Zong-yong,Zhu Cui,Chen Zhuang,Jiang Zong-yong. 2017

[5]Effects of different forms of yeast Saccharomyces cerevisiae on growth performance, intestinal development, and systemic immunity in early-weaned piglets. Jiang, Zongyong,Wei, Shaoyong,Wang, Zhilin,Hu, Shenglan,Zheng, Chuntian,Hu, Youjun,Wang, Li,Ma, Xianyong,Yang, Xuefen,Jiang, Zongyong,Zhu, Cui,Chen, Zhuang. 2015

[6]Five Fatty Acyl-Coenzyme A Reductases Are Involved in the Biosynthesis of Primary Alcohols in Aegilops tauschii Leaves. Wang, Meiling,Wu, Hongqi,Li, Chunlian,Wang, Yong,Wang, Zhonghua,Xu, Jing. 2017

[7]Biosynthesis of 2-phenylethanol using tobacco waste as feedstock. Wang, Qian,Song, Yufeng,Jin, Yirong,Liu, Haobao,Sun, Yuhe,Liu, Guanshan,Zhang, Haibo.

[8]Statistical Optimization of Culture Media and Conditions for Production of Mannan by Saccharomyces cerevisiae. Liu, Hong-Zhi,Wang, Qiang,Liu, Yuan-Yuan,Fang, Fang.

[9]Stable cell-surface expression of Japanese flounder growth hormone in yeast Saccharomyces cerevisiae and growth-promoting effect on juvenile fish by oral administration. Zang, Xiao-Nan,Zhang, Xue-Cheng,Liu, Bin,Liu, Xin-Fu,Lei, Ji-Lin. 2012

[10]Chemical composition and sensory profiles of mulberry wines as fermented with different Saccharomyces cerevisiae strains. Tao, Yang,Wang, Yilin,Yang, Jun,Wang, Qi,Jiang, Na,Han, Yongbin,Dinh-Toi Chu,Dinh-Toi Chu,Zhou, Jianzhong. 2017

[11]Productivity enhancement of S-adenosylmethionine in Saccharomyces cerevisiae using n-hexadecane as oxygen vector. Meng, Xiumei,Li, Minghua,Du, Fangling,Zhao, Xiaoyan,Diao, Enjie.

[12]Purification of the recombinant hepatitis B virus core antigen (rHBcAg) produced in the yeast Saccharomyces cerevisiae and comparative observation of its particles by transmission electron microscopy (TEM) and atomic force microscopy (AFM). Chen, H,Lu, JH,Liang, WQ,Huang, YH,Zhang, WJ,Zhang, DB. 2004

[13]Effects of Low Molecular Weight Yeast beta-Glucan on Antioxidant and Immunological Activities in Mice. Lei, Na,Wang, Mi,Zhang, Lifang,Xiao, Sui,Fei, Chengzhong,Wang, Xiaoyang,Zhang, Keyu,Zheng, Wenli,Wang, Chunmei,Yang, Ruile,Xue, Feiqun. 2015

[14]Extraction of Polysaccharides from Saccharomyces cerevisiae and its Immune Enhancement Activity. Wang, Hui,Dong, Pengcheng,Luo, Yongjiang,Cheng, Fusheng,Zhang, Xia. 2013

[15]Immunoactivities and antineoplastic activities of Saccharomyces cerevisiae mannoprotein. Liu, Hong-Zhi,Wang, Qiang,He, Yin. 2011

[16]A Rapid Molecular Method for Detection of Spoilage Yeasts in Orange Juice. Guo, D. Q.,Yang, X. H.,Hu, Q.,Liu, C. Y.,Zhou, Z. Q.,Guo, D. Q.,Yang, X. H.,Hu, Q.,Liu, C. Y.,Zhou, Z. Q.,Zhou, Z. Q.,Jiao, B. N.. 2012

[17]Yeast heat-shock protein gene HSP26 enhances freezing tolerance in Arabidopsis. Xue, Yong,Peng, Rihe,Xiong, Aisheng,Li, Xian,Yao, Quanhong,Zha, Dingshi.

[18]Effects of dietary Saccharomyces cerevisiae culture or live cells with Bacillus amyloliquefaciens spores on growth performance, gut mucosal morphology, hsp70 gene expression, and disease resistance of juvenile common carp (Cyprinus carpio). Huang, Lu,Hu, Jun,Zhou, Zhigang,Huang, Lu,Ran, Chao,He, Suxu,Ren, Pengfei,Zhou, Zhigang,Zhao, Xizhen.

[19]Expression of five AtHsp90 genes in Saccharomyces cerevisiae reveals functional differences of AtHsp90s under abiotic stresses. Song, Hongmiao,Fan, Pengxiang,Shi, Wuliang,Li, Yinxin,Song, Hongmiao,Zhao, Rongmin. 2010

[20]Effects of spaceflight on polysaccharides of Saccharomyces cerevisiae cell wall. Liu, Hong-Zhi,Wang, Qiang,Liu, Xiao-Yong,Tan, Sze-Sze.

作者其他论文 更多>>