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csomag Válaszul a Horpadás yeast tar cloning felfüggesztésére vidéki Előfeltétel

SciELO - Brasil - Heterologous Expression of a Putative ClpC Chaperone Gene  Leads to Induction of a Host Metabolite Heterologous Expression of a  Putative ClpC Chaperone Gene Leads to Induction of a
SciELO - Brasil - Heterologous Expression of a Putative ClpC Chaperone Gene Leads to Induction of a Host Metabolite Heterologous Expression of a Putative ClpC Chaperone Gene Leads to Induction of a

TAR cloning: insights into gene function, long-range haplotypes and genome  structure and evolution | Nature Reviews Genetics
TAR cloning: insights into gene function, long-range haplotypes and genome structure and evolution | Nature Reviews Genetics

Synthetic viruses—Anything new? | PLOS Pathogens
Synthetic viruses—Anything new? | PLOS Pathogens

Transformation-associated recombination (TAR) cloning for genomics studies  and synthetic biology. - Abstract - Europe PMC
Transformation-associated recombination (TAR) cloning for genomics studies and synthetic biology. - Abstract - Europe PMC

Transformation-associated recombination (TAR) cloning for genomics studies  and synthetic biology. - Abstract - Europe PMC
Transformation-associated recombination (TAR) cloning for genomics studies and synthetic biology. - Abstract - Europe PMC

Synbio Technologies - Small Genome Synthesis Yeast homologous recombination  is capable of joining many DNA segments together without the use of DNA  polymerases or ligases. This process makes yeast extremely valuable for
Synbio Technologies - Small Genome Synthesis Yeast homologous recombination is capable of joining many DNA segments together without the use of DNA polymerases or ligases. This process makes yeast extremely valuable for

Cloning, Assembly, and Modification of the Primary Human Cytomegalovirus  Isolate Toledo by Yeast-Based Transformation-Associated Recombination |  mSphere
Cloning, Assembly, and Modification of the Primary Human Cytomegalovirus Isolate Toledo by Yeast-Based Transformation-Associated Recombination | mSphere

Cloning of the Repertoire of Individual Plasmodium falciparum var Genes  Using Transformation Associated Recombination (TAR) | PLOS ONE
Cloning of the Repertoire of Individual Plasmodium falciparum var Genes Using Transformation Associated Recombination (TAR) | PLOS ONE

CReasPy-Cloning: A Method for Simultaneous Cloning and Engineering of  Megabase-Sized Genomes in Yeast Using the CRISPR-Cas9 System | ACS  Synthetic Biology
CReasPy-Cloning: A Method for Simultaneous Cloning and Engineering of Megabase-Sized Genomes in Yeast Using the CRISPR-Cas9 System | ACS Synthetic Biology

PDF] Genome-wide engineering of an infectious clone of herpes simplex virus  type 1 using synthetic genomics assembly methods | Semantic Scholar
PDF] Genome-wide engineering of an infectious clone of herpes simplex virus type 1 using synthetic genomics assembly methods | Semantic Scholar

Frontiers | Recent Advances in Strategies for the Cloning of Natural  Product Biosynthetic Gene Clusters
Frontiers | Recent Advances in Strategies for the Cloning of Natural Product Biosynthetic Gene Clusters

TAR Cloning: Perspectives for Functional Genomics, Biomedicine, and  Biotechnology: Molecular Therapy - Methods & Clinical Development
TAR Cloning: Perspectives for Functional Genomics, Biomedicine, and Biotechnology: Molecular Therapy - Methods & Clinical Development

Highly Selective, CRISPR/Cas9‐Mediated Isolation of Genes and Genomic Loci  from Complex Genomes by TAR Cloning in Yeast - Kouprina - 2021 - Current  Protocols - Wiley Online Library
Highly Selective, CRISPR/Cas9‐Mediated Isolation of Genes and Genomic Loci from Complex Genomes by TAR Cloning in Yeast - Kouprina - 2021 - Current Protocols - Wiley Online Library

CReasPy-Cloning: A Method for Simultaneous Cloning and Engineering of  Megabase-Sized Genomes in Yeast Using the CRISPR-Cas9 System | ACS  Synthetic Biology
CReasPy-Cloning: A Method for Simultaneous Cloning and Engineering of Megabase-Sized Genomes in Yeast Using the CRISPR-Cas9 System | ACS Synthetic Biology

Cloning of human centromeres by transformation-associated recombination in  yeast and generation of functional human artificial chromosomes. - Abstract  - Europe PMC
Cloning of human centromeres by transformation-associated recombination in yeast and generation of functional human artificial chromosomes. - Abstract - Europe PMC

In-yeast reconstruction of the African swine fever virus genome isolated  from clinical samples - ScienceDirect
In-yeast reconstruction of the African swine fever virus genome isolated from clinical samples - ScienceDirect

Figure 3 | Transformation-associated recombination (TAR) cloning for  genomics studies and synthetic biology | SpringerLink
Figure 3 | Transformation-associated recombination (TAR) cloning for genomics studies and synthetic biology | SpringerLink

Highly selective isolation of human DNAs from rodent–human hybrid cells as  circular yeast artificial chromosomes by transformation-associated  recombination cloning | PNAS
Highly selective isolation of human DNAs from rodent–human hybrid cells as circular yeast artificial chromosomes by transformation-associated recombination cloning | PNAS

Rapid reconstruction of SARS-CoV-2 using a synthetic genomics platform |  bioRxiv
Rapid reconstruction of SARS-CoV-2 using a synthetic genomics platform | bioRxiv

Design and strategy of TAR-based cloning and expression. (A) The... |  Download Scientific Diagram
Design and strategy of TAR-based cloning and expression. (A) The... | Download Scientific Diagram

PDF) Transformation-associated recombination (TAR) cloning for genomics  studies and synthetic biology
PDF) Transformation-associated recombination (TAR) cloning for genomics studies and synthetic biology