Genotyping of recombinant Pichia pastoris strains

被引:0
作者
José M. Viader-Salvadó
Eddy L. Cab-Barrera
Luis J. Galán-Wong
Martha Guerrero-Olazarán
机构
[1] Universidad Autónoma de Nuevo León. Ave. Pedro de Alba s/n,Instituto de Biotecnología, Facultad de Ciencias Biológicas
来源
Cellular & Molecular Biology Letters | 2006年 / 11卷
关键词
Pichia pastoris; Amplified-fragment length polymorphism (AFLP); Clonal variation;
D O I
暂无
中图分类号
学科分类号
摘要
A simplified amplified-fragment length polymorphism (AFLP) method was used to genotype Pichia pastoris strains obtained by transformation of P. pastoris strain GS115 with a single integration vector. A total of 14 transformants and 3 control strains were analyzed, which generated 16 different band patterns. A clonal variation was obtained after the transformation process due to genetic differences generated during the transformation event of the host strain. Furthermore, the cluster analysis showed that the transformants with lesser genetic differences with respect to the P. pastoris host strain are the recombinant strains with the highest level of recombinant protein production.
引用
收藏
页码:348 / 359
页数:11
相关论文
共 50 条
[31]   Development of two methods for rapid screening of recombinant Pichia pastoris strains with high-level expression of β-mannanase [J].
李古月 ;
郑甲 ;
周洪波 .
Journal of Central South University, 2015, 22 (11) :4162-4167
[32]   Optimization for high-level expression of the Pichia guilliermondii recombinant inulinase in Pichia pastoris and characterization of the recombinant inulinase [J].
Zhang, Tong ;
Gong, Fang ;
Peng, Ying ;
Chi, Zhenming .
PROCESS BIOCHEMISTRY, 2009, 44 (12) :1335-1339
[33]   Development of two methods for rapid screening of recombinant Pichia pastoris strains with high-level expression of β-mannanase [J].
Li Gu-yue ;
Zheng Jia ;
Zhou Hong-bo .
JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2015, 22 (11) :4162-4167
[34]   Carbon source feeding strategies for recombinant protein expression in Pichia pastoris and Pichia methanolica [J].
Poutou-Pinales, Raul A. ;
Cordoba-Ruiz, Henry A. ;
Barrera-Avellaneda, Luis A. ;
Delgado-Boada, Julio M. .
AFRICAN JOURNAL OF BIOTECHNOLOGY, 2010, 9 (15) :2173-2184
[35]   Improvement of recombinant L-Asparaginase production in Pichia pastoris [J].
Erden-Karaoglan, Fidan ;
Karaoglan, Mert .
3 BIOTECH, 2023, 13 (05)
[36]   Secretory production of recombinant urokinase kringle domain in Pichia pastoris [J].
Kim, HK ;
Hong, YK ;
Park, HE ;
Hong, SH ;
Joe, YA .
JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 2003, 13 (04) :591-597
[37]   Characterization of recombinant barley oxalate oxidase expressed by Pichia pastoris [J].
Whittaker, MM ;
Whittaker, JW .
JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 2002, 7 (1-2) :136-145
[38]   Effect of Lanthanum on Expression of Recombinant Allophycocyanin Gene in Pichia Pastoris [J].
任育红 ;
葛保胜 ;
金海珠 ;
唐志红 ;
郭承华 ;
秦松 .
Journal of Rare Earths, 2005, (04) :491-495
[39]   Pichia pastoris: A Recombinant Microfactory for Antibodies and Human Membrane Proteins [J].
Goncalves, A. M. ;
Pedro, A. Q. ;
Maia, C. ;
Sousa, F. ;
Queiroz, J. A. ;
Passarinha, L. A. .
JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 2013, 23 (05) :587-601
[40]   Expression and antimicrobial activity of the recombinant bovine lactoferricin in Pichia pastoris [J].
Lv, Xueqin ;
Zhang, Yuting ;
Wang, Lingrui ;
Cui, Shixiu ;
Liu, Yanfeng ;
Li, Jianghua ;
Du, Guocheng ;
Liu, Long .
SYNTHETIC AND SYSTEMS BIOTECHNOLOGY, 2024, 9 (01) :26-32