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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

StepsDetailed proceduresTurnaround time
1. Analysis of the needs
Free sample evaluation1-3 days
Strategy design
2. Experimental procedure (varies depending on complexity)Vector construction7-20 days
Transformation and screening
Sequence verification
3. DeliverablesMutated strain and experimental report5-7 days

Table 2  Prices for Yeast Gene Editing Services

PIDYeast gene editingTurnaround time
(weeks)
Price(US$)/strainNew Lab 30% OFF
A202Precise gene deletion4-5From 600 USDFrom 420 USD
A203Precise nucleotide changes4-5From 650 USDFrom 455 USD
A204Precise sequence knock-in4-5From 700 USDFrom 490 USD

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.