Shu-Ping Zou


Ontology type: schema:Person     


Person Info

NAME

Shu-Ping

SURNAME

Zou

Publications in SciGraph latest 50 shown

  • 2022-01-17 Bacterial dynamics and functions driven by bulking agents to enhance organic degradation in food waste in-situ rapid biological reduction (IRBR) in BIOPROCESS AND BIOSYSTEMS ENGINEERING
  • 2021-05-24 Overproduction of D-pantothenic acid via fermentation conditions optimization and isoleucine feeding from recombinant Escherichia coli W3110 in 3 BIOTECH
  • 2021-04-05 Identification of a novel promoter for driving antibiotic-resistant genes to reduce the metabolic burden during protein expression and effectively select multiple integrations in Pichia Pastoris in APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
  • 2020-06-17 Effects of methyl oleate and microparticle-enhanced cultivation on echinocandin B fermentation titer in BIOPROCESS AND BIOSYSTEMS ENGINEERING
  • 2020-02-04 Engineering a Pichia pastoris nitrilase whole cell catalyst through the increased nitrilase gene copy number and co-expressing of ER oxidoreductin 1 in APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
  • 2019-03-14 Integrated strategy of temperature shift and mannitol feeding for enhanced production of echinocandin B by Aspergillus nidulans CCTCC M2012300 in 3 BIOTECH
  • 2018-11-28 Highly efficient conversion of 1-cyanocycloalkaneacetonitrile using a “super nitrilase mutant” in BIOPROCESS AND BIOSYSTEMS ENGINEERING
  • 2017-11-18 Enhanced catalytic efficiency and enantioselectivity of epoxide hydrolase from Agrobacterium radiobacter AD1 by iterative saturation mutagenesis for (R)-epichlorohydrin synthesis in APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
  • 2016-07-05 Covalent immobilization of Agrobacterium radiobacter epoxide hydrolase on ethylenediamine functionalised epoxy supports for biocatalytical synthesis of (R)-epichlorohydrin in BIOTECHNOLOGY LETTERS
  • 2015-06-20 Mutagenesis breeding of high echinocandin B producing strain and further titer improvement with culture medium optimization in BIOPROCESS AND BIOSYSTEMS ENGINEERING
  • 2013-02-22 Enhanced biotransformation of 1,3-dichloro-2-propanol to epichlorohydrin via resin-based in situ product removal process in BIOTECHNOLOGY LETTERS
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