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Yeast Gene Editing
Yeast Gene Editing
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CRISPR/Cas9 Yeast Gene Editing Service

Thanks to the convenient CRISPR/Cas9 gene editing system, gene editing in yeast, C. elegans, Drosophila, zebrafish, mice, human cells, and other species more efficient. Currently, we have established a complete CRISPR/Cas9-mediated guided yeast gene editing system (Figure 1) to rapidly and efficiently perform the following edits: precise sequence knockouts, precise single-base mutations, precise sequence insertions, precise short protein tag insertions, and precise sequence replacements.

  • SunyBiotech c.elegans gene editing via the CRISPR/Cas9 system
  • SunyBiotech c.elegans gene editing via the CRISPR/Cas9 system
  • SunyBiotech c.elegans gene editing via the CRISPR/Cas9 system
  • SunyBiotech c.elegans gene editing via the CRISPR/Cas9 system
  • SunyBiotech c.elegans gene editing via the CRISPR/Cas9 system
  • SunyBiotech c.elegans gene editing via the CRISPR/Cas9 system
  • SunyBiotech c.elegans gene editing via the CRISPR/Cas9 system
  • SunyBiotech c.elegans gene editing via the CRISPR/Cas9 system
  • SunyBiotech c.elegans gene editing via the CRISPR/Cas9 system

Figure 1    CRISPR/Cas9 Gene Editing System

Saccharomyces cerevisiae has wide applications in both basic and applied research.

In basic research:

  1. 1.Genomics research: Saccharomyces cerevisiae has become an ideal model organism for studying gene expression, gene function, and gene family relationships.
  2. 2.Biochemical research: Saccharomyces cerevisiae can be used to study biochemical mechanisms including carbon metabolism, protein degradation, and cell cycle regulation.
  3. 3.Medical research: Saccharomyces cerevisiae can be used to study disease mechanisms such as protein aggregation and metabolic disorders.

In applied research:

  1. 1.Metabolic engineering: Modifying metabolic pathways of Saccharomyces cerevisiae to produce and synthesize industrial chemicals and biofuels, such as lactic acid, ethanol, butanol, etc.
  2. 2.Synthetic biology: Inserting the whole metabolic pathway to Saccharomyces cerevisiae de novo synthesis of biomaterials such as vitamins, antibiotics, proteins, etc.

Table 1 Service Process for Yeast Transgenic Technology

StepsMaterialsStandard
Sample preparationsgRNA plasmid, repair templateHigh-purity plasmid preparation
Yeast transformationSpecified yeast strainHigh-qualityyeast competent cells
Preliminary screeningSingle yeast clones on selective mediumMutated yeast clone containing target gene editing
Molecular verificationPotential positive yeast clones with target editingMutated yeast clone with precise target gene editing verified by the sequencing

Table 2  Prices for Yeast Gene Editing Services

PIDYeast gene editingTurnaround time
(weeks)
Price(US$)/strain

A202Precise gene deletion4-5600

A203Precise nucleotide changes4-5650

A204Precise sequence knock-in4-5700

For cases involving sequence deletions larger than 1500 bp or insertions greater than 900 bp, please contact service@sunybiotech.com for quotation.



Deliverables:

  1. 1.Edited strains verified by sequencing
  2. 2.Sequencing report

How to Order:

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Have Other Questions?

FAQs

You can always reach us at service@sunybiotech.com. Our customer service and editing experts will get back to you ASAP.