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Animal Transcriptomics Solutions
Flow Chart of Animal Transcriptome Sequencing Services
The animal transcriptome is a collection of complete transcripts in cells during specific developmental stages or physiological conditions. Analysis of transcriptomes can further unlock the mysteries contained in animal genetic material. BioVenic has introduced a range of tailored services for animal transcriptomics, such as sequencing various RNA types, conducting whole transcriptome analysis, and standardizing sequencing data. We offer customers robust and dependable scientific research tools to investigate animal gene expression, growth, development, and physiological status from a transcriptomic perspective. We offer a wide range of qualitative analyses and support the quantification of changes in transcript expression levels during development and under various conditions. We are committed to guiding our customers in understanding the role of the transcriptome in elucidating the functional components of animal genomes, uncovering the molecular components of cells and tissues, and comprehending the mechanisms of animal development, trait expression, and animal disease.
Flow Chart of Animal Transcriptome Sequencing Services
Animal Transcriptomics Services
BioVenic has launched a whole-transcriptome sequencing service for animal samples to characterize all RNA transcripts of an individual and study animal RNA functions. Our expert team accurately quantifies transcription levels, studies, and explores potential transcription and regulatory network mechanisms for clients, and uncovers the inherent relationship between gene expression, biological traits, and physiological phenomena.
BioVenic mRNA sequencing service utilizes various technical strategies for different types of animal samples, allowing for highly sensitive and accurate detection even with minimal sample amounts. This technology enables the detection of previously undetectable changes in disease states, treatment responses, various environmental conditions, and various other research designs. Customers can flexibly choose customized mRNA sequencing service plans based on sample conditions and research directions.
The animal small RNA sequencing service can simultaneously detect all small non-coding RNAs with regulatory functions in the sample, providing a powerful tool for studying the functions and regulatory mechanisms of small RNAs or screening new small RNAs. BioVenic also offers independent miRNA sequencing services, which efficiently enrich miRNA through standardized sample processing procedures, effectively increasing the data volume and sequencing depth of miRNA.
BioVenic utilizes ribosome chain-specific library construction methods to enrich target RNA, offering researchers comprehensive customized services for high-throughput sequencing of LncRNA. We leverage our extensive experience in animal transcriptomics projects to assist customers thoroughly and accurately acquire information on long non-coding RNA associated with specific biological processes, such as animal development or disease.
BioVenic offers personalized animal circRNA sequencing services, including sequencing library construction and data analysis. We offer customers a robust scientific research tool that leverages high-throughput sequencing technology and bioinformatics methods to thoroughly analyze the vast information contained in circRNAs, which are widely found in animals and are involved in species conservation and tissue specificity.
BioVenic offers a wide range of bioinformatics analysis solutions for analyzing animal transcriptome data. Whether you have a reference genome or not, our team of bioinformatics experts will customize an exclusive analysis package for you based on your project goals to meet your scientific research needs effectively.
RNA-Seq Analysis Platforms
BioVenic's RNA sequencing (RNA-Seq) platform is tailored for scientific users who need detailed analysis of the influence of RNA on gene expression and cellular function in animal samples. The platform utilizes next-generation sequencing to capture snapshots of animal transcriptomes and identify non-transcriptomic RNA sequences. By combining this powerful technology platform with advanced bioinformatics analysis, we provide comprehensive coverage of the issues our customers may face in animal transcriptome research, offering a one-stop solution. At the same time, RNA-Seq can achieve quantification and identify differential expression, providing a powerful tool for in-depth exploration of animal physiological health conditions and transcriptome regulation of various common diseases.
RNA-Seq Analysis Workflow
Why Choose Us?
An experienced team of animal transcriptomics experts selects the most appropriate technology platform and approach and customizes a comprehensive implementation plan based on your specific needs.
Using RNA-Seq technology and PCR platform, along with proficient practical techniques, we can accurately and efficiently detect and analyze the RNA in each group of animal samples.
Strictly standardized processing procedures are established for different types of samples to remove ribosomal RNA while minimizing the loss of functional RNA in the sample and ensuring sample integrity to the highest degree possible.
Comprehensive and rigorous bioinformatics data analysis includes correlation and differentiation analysis, functional annotation, and the discovery of new targets. Advanced analysis can be customized according to individual needs.
BioVenic's animal transcriptome solution is based on a high-throughput sequencing platform, which accurately identifies nucleotide sequences and measures the transcription levels of entire tissues or animal specific cells. Our data analysis and processing team can uncover unknown and rare transcripts during the analysis of transcript structure and expression levels. Additionally, we can accurately pinpoint alternative splicing sites to offer the most comprehensive transcriptome information. Please contact us for a comprehensive animal transcriptomic service that offers precise digital signals, high detection throughput, a wide detection range, and detailed bioanalysis.