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Animal Transcriptomic Data Analysis
Animal Transcriptomic Data Analysis Services
With the continuous development and application of high-throughput sequencing technology and software modeling, animal transcriptome analysis is gradually being utilized to identify genes with significant functions. However, the threshold for efficient and accurate transcriptome analysis based on massive sequencing data is high and complex. BioVenic specializes in providing customized solutions for analyzing animal transcriptome data. We tailor efficient and cost-effective data analysis combinations to align with your project goals. Our data analysis team is proficient in various methods, including homologous gene prediction, selection signal detection, extreme data analysis, GO annotation, KEGG enrichment, and batch isolation of RNA-Seq. These capabilities enhance the scientific rigor and reliability of our reporting results. BioVenic stays at the forefront of data analysis methods, continuously enhancing and updating database resources. We are dedicated to accurately uncovering the genetic regulation and life patterns of animals for scientific researchers.
Fig.1 Analysis of Gene Expression Patterns Related to Muscle Development in Pigeons. 1
Animal Transcriptomic Data Analysis Services
BioVenic is launching transcriptome analysis services for scientific researchers who are facing significant data processing pressure. Our technical staff has extensive project experience and can efficiently develop and implement the most appropriate data analysis plan tailored to your interests, enabling you to easily overcome technical obstacles. We categorize animal transcriptome analysis services into two groups: transcriptome analysis with ginseng and transcriptome analysis without ginseng.
- Reference-free Transcriptome Data Analysis
Reference-free sequencing refers to analyzing the transcriptome of animal samples without relying on a reference genome. Our technical team conducts quality control on the raw data obtained after sequencing and then aligns it with reference sequences for further analysis, including functional annotation, SNP identification, SSR marker development, etc. BioVenic offers support for differential gene expression analysis and differential gene function enrichment analysis on multiple samples to identify unknown and rare transcripts. This process helps in guiding the next steps of research and provides comprehensive transcriptome information.
Statistical Processing of Raw Data | Metabolic Pathway Annotation |
Sequencing Quality Assessment | Advanced Function Notes |
Transcriptome Assembly and Quality Statistical Analysis | SSR Development and Primer Design |
Expression Statistics (gene coverage, expression level, expression abundance distribution) | Sample Relationship Analysis |
Protein Database Annotation. | Analysis of Differentially Expressed Genes |
COG/KOG Annotation and Classification | Interaction Network Analysis |
GO Functional Annotation and Classification | Mutation Analysis |
- Reference Transcriptome Data Analysis
Our animal reference transcriptome analysis focuses on analyzing transcriptome sequencing data from animals or their tissues and cells with known reference genomes. By comparing the sequencing data with the reference genome, we evaluate the sequencing saturation and gene coverage of the original transcriptome for our clients. Simultaneously, we comprehensively analyze the vital biological information present in the data regarding animal gene structure, gene expression variances, and alternative splicing of sequences.
Sequencing Quality Assessment | Sample Relationship Analysis |
Raw Data Filtering | Differentially Expressed Gene Analysis |
Align the Reference Genome or Gene Sequence | SNP analysis |
Sequencing and Alignment Assessment | Trend Analysis |
Gene Expression Statistics | Gene Structure Optimization |
Transcript Prediction and Annotation | Gene Alternative Splicing Identification |
- Customized Bioinformatic Analysis
With many years of project experience, a professional technical team, and a powerful data analysis software platform, BioVenic meets the diverse needs of customers in animal transcriptome data analysis. Our expert technical team will communicate with you regarding the project's direction and goals to develop a customized data analysis package that aligns perfectly with your scientific research direction. This package will provide you with high-value and reliable analysis reports.
Why Choose Us?
The experienced technical team provides a full range of professional services, from solution design to data analysis.
Mature data analysis standardizes processes, reducing unnecessary samples and time wastage, thereby ensuring the quality of delivery.
BioVenic offers a comprehensive bioinformatics analysis platform to assist customers in performing advanced customized analyses.
BioVenic's services span multiple fields, providing customers with integrated analysis of animal multi-omics and fully interpreting data.
BioVenic utilizes transcriptome data analysis solutions to assist customers in identifying animal functional genes and gaining a comprehensive analysis of the mysteries of life. We have not only conducted in-depth exploration and optimization of statistical analysis methods for recombinant data mining but also completed the research strategy from utilizing data for gene mining and functional gene identification to maximizing the similarity and expression of homologous genes across different species. The change in the direction of differentiation provides a powerful research tool for genetic analysis of significant economic traits in livestock and poultry, as well as for mining and identifying important functional genes. BioVenic relies on its continuously enriched database, high-precision functional mining and identification, and industry-leading technology platform to ensure the accuracy and authenticity of the results it delivers. Please feel free to contact us to overcome data processing difficulties.
Reference
- Ding, Hao, et al. "Transcriptome analysis of differentially expressed mRNA related to pigeon muscle development." Animals 11.8 (2021): 2311.