ChIP-seq, a genome-wide DNA binding method for identifying transcription factors and other proteins, is widely used to study protein-DNA interactions in animals and plants. According to the ChIP protocol, DNA-binding proteins are immunoprecipitated using specific antibodies. The bound DNA is then co-precipitated, purified and sequenced, allowing efficient and accurate genome-wide screening and identification of DNA binding sites for specific proteins, laying the foundation for further research to reveal the gene regulatory pathways at play in various plant and animal diseases and biological pathways
CD Genomics has extensive experience in ChIP-seq services in animal and plant research, solving the challenges of ChIP-seq application in plants. We provide high-quality antibodies for target transcription factors, as well as construct transgenic plants expressing tagged proteins, overcoming the technical obstacle of long cycle time and high failure rate of preparing antibodies and transgenic materials for ChIP-seq application in plants. This service of ours is equally effective in animal research. Based on ChIP-seq research, we will provide research strategies to improve agricultural productivity, farming and resistance of plants and animals to diseases.
ChIP-Seq does not require known sequence probes and provides genome-wide analysis through massively sequencing, generating millions of counts in multiple samples for cost-effective, accurate, and unbiased investigation of epigenetic patterns. Other advantages include.
Nature of sample | Concentration | Quantity |
---|---|---|
CHIP DNA | 5 ng / μL | 10-50 ng |
Fig 2. ChIP-Seq workflow
CD Genomics provides the best quality ChIP-seq service in the field of plant and animal research. We have a professional sequencing technology team, the most advanced sequencing platform, and promise to provide you with the fastest experimental turnaround rate and the most accurate and reliable experimental results. If you are interested in us, please feel free to contact us.
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CD Genomics is propelling the future of agriculture by employing cutting-edge sequencing and genotyping technologies to predict and enhance multiple complex polygenic traits within breeding populations.