Plant Genome Sequencing

Plant Genome Sequencing

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Plant Genome Sequencing

NGS technologies are being used to generate whole genome sequences for various crops, showing important applications in identifying the genetic basis of important traits in agriculture and predicting the breeding value of individuals in plant breeding populations.

CD Genomics is dedicated to the field of agricultural genomic research, aiming to provide high-quality genomic research services to researchers and breeders, promote genome sequencing and genotyping studies, accelerate the construction of agricultural genomic databases, and facilitate crop breeding and variety improvement. The NGS technology we provide is being applied to plant breeding, providing an effective solution to the problem of feeding the world's population in the face of the world's population increase.

We offer multiple sequencing solutions to accelerate crop research

Plant genome de novo sequencing can obtain the genome sequence map of the species, which can study the growth, development, evolution, origin and other major issues of the species at the genome level, deepen our understanding of the species, and play a great role in the discovery of new genes and species improvement.

GWAS are a method to obtain candidate genes or genomic regions associated with phenotypic traits. GWAS studies are conducted based on SNP and phenotypic information of each individual in a population and linkage disequilibrium between markers and target genes. It provides important ideas for studying the microevolution of crops and for variety improvement.

QTL mapping have shown important applications in identifying QTL related to important agronomic traits, and in breeding superior crop varieties.

Plant genome sequencing is widely used to accelerate crop research

The application of plant genome sequencing technology can provide more accurate predictions for crop breeding, which can be effectively applied to crop genetic breeding research, plant growth and development and evolutionary origin research, mining candidate genes related to superior traits such as crop resistance, yield and quality, predicting crop phenotypes, shortening breeding years, and improving crop research efficiency. The main applications are in the following studies.

  • High-quality gene resource mining
  • Functional gene mining
  • Mutation loci identification
  • Gene resource and genetic diversity research

Sample provision requirements

Fresh plant tissue, genomic DNA

Our service workflow

Library construction

We prepare libraries with higher stability and lower cost requirements.

Sequencing

Our advanced sequencing systems support multiple sequencing modes for fast, streamlined implementation of sequencing needs.

Bioinformatics analysis

Our bioinformatics analysis services are fast, integrated, easy to apply and cost effective.

Our advantage and features

  • Professional focus. With many years of experience in agricultural genome sequencing services, our experts and technical team have many years of experience in project services.
  • Transparent service. We provide timely feedback on the progress of experimental projects and reduce the worries of our clients.
  • Advanced instruments. We have a variety of advanced sequencing platforms to provide our clients with diverse options and to maximize the speed of the project.
  • Guaranteed results. We guarantee the authenticity and objectivity of all subject experimental data.

CD Genomics provides high quality plant genome sequencing services, and our sequencing services make agricultural genome research more economical, simple and reliable. To date, we have successfully provided genome sequencing services for hundreds of plant species, and we have greatly promoted the application of sequencing technology in mining economically important genes, providing crop variety improvement strategies, and accelerating crop genetic breeding research. If you are interested in us, please feel free to contact us.

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OUR MISSION

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.

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