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Biotechnology Bioinformatics Jobs in Virginia (NOW HIRING)

... Biotechnology Security Protecting sensitive genomic sequencing data and bioinformatics pipelines. Secure collaboration practices for genomic and synthetic biology research, including data use ...

Data (Genomic Data) Security & Biotechnology Security * Protecting sensitive genomic sequencing data and bioinformatics pipelines. * Secure collaboration practices for genomic and synthetic biology ...

... and biotechnology research projects. The position will contribute to the design, execution ... Experience with data analysis, automation platforms, or bioinformatics tools. Pay Band 4 Overtime ...

You might act as strategic consultant to an external pharma or biotech partner in the morning ... bioinformatics, computational biology, statistics or a closely related field - and you have led ...

Biotechnology Bioinformatics information

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$59K

$93.7K

$148.2K

How much do biotechnology bioinformatics jobs pay per year?

As of Jul 31, 2026, the average yearly pay for biotechnology bioinformatics in Virginia is $93,664.00, according to ZipRecruiter salary data. Most workers in this role earn between $66,900.00 and $128,400.00 per year, depending on experience, location, and employer.

What biology jobs pay over $100k?

In biotechnology bioinformatics, roles such as senior bioinformatics scientist, computational biologist, and biotech data director typically offer salaries exceeding $100,000 annually. These positions often require advanced degrees, programming skills, and experience with genomic data analysis tools like R, Python, or SQL.

What pays more, bioinformatics or biotechnology?

Biotechnology roles generally offer higher salaries than bioinformatics positions, especially in industry and research settings, due to the broader scope and demand for laboratory and development skills. Bioinformatics jobs tend to focus on data analysis and computational skills, which can also be well-paid but often have slightly lower starting salaries compared to hands-on biotech roles.

What is the difference between Biotechnology Bioinformatics vs Molecular Biologist?

AspectBiotechnology BioinformaticsMolecular Biologist
Required CredentialsBachelor's or Master's in Bioinformatics, Biotechnology, or related fields; often includes programming skillsBachelor's or Master's in Molecular Biology, Genetics, or related fields; laboratory experience essential
Work EnvironmentLaboratories, research centers, biotech companies; focus on data analysis and computational toolsWet labs, research institutions, hospitals; focus on experimental work and biological assays
Employer & Industry UsageBiotech firms, pharmaceutical companies, research institutionsAcademic labs, healthcare, research institutes

Biotechnology Bioinformatics primarily involves analyzing biological data using computational methods, while Molecular Biologists focus on experimental research in biological systems. Both roles are vital in biotech and research sectors but differ in skills and daily tasks.

What jobs can I get with a bioinformatics degree?

A bioinformatics degree can lead to roles such as bioinformatics analyst, computational biologist, research scientist, or data scientist in biotech, pharmaceutical, or research institutions. These positions often require skills in programming, data analysis, and familiarity with biological databases and tools like R, Python, or SQL.

Is bioinformatics a high paying job?

Bioinformatics professionals often earn competitive salaries, especially with advanced skills in programming, data analysis, and familiarity with tools like R and Python. Salaries vary based on experience, education, and location, but the field generally offers high earning potential compared to many other entry-level science roles.

How do bioinformatics professionals in biotechnology typically collaborate with laboratory scientists?

Bioinformatics professionals in biotechnology often work closely with laboratory scientists to analyze and interpret complex biological data, such as genomic sequences or protein structures. Collaboration usually involves regular meetings to discuss experimental design, data requirements, and results interpretation. Bioinformaticians may assist in developing custom analysis pipelines, troubleshooting issues, and translating computational findings into actionable insights for experimental work. This teamwork is crucial for advancing research projects and ensuring that computational and experimental efforts are well-integrated.

What are the key skills and qualifications needed to thrive as a Biotechnology Bioinformatics professional, and why are they important?

To thrive as a Biotechnology Bioinformatics professional, you need a solid background in molecular biology, genetics, and computational data analysis, typically supported by a degree in bioinformatics, biotechnology, or a related field. Familiarity with programming languages (such as Python, R), bioinformatics software (like BLAST, Bioconductor), and experience with databases (e.g., GenBank) are commonly required. Strong problem-solving skills, attention to detail, and effective communication help professionals collaborate and interpret complex biological data. These skills are essential for advancing research, developing innovative solutions, and translating biological data into actionable insights.

What is biotechnology bioinformatics?

Biotechnology bioinformatics is a field that combines biology, computer science, and information technology to analyze and interpret biological data, especially large datasets like DNA sequences, protein structures, and gene expression profiles. Professionals in this area develop and apply computational tools to solve problems in biotechnology, such as drug discovery, genetic engineering, and personalized medicine. Their work enables researchers to make sense of complex biological information, accelerating innovation in healthcare, agriculture, and environmental science.
What are the most commonly searched types of Biotechnology Bioinformatics jobs in Virginia? The most popular types of Biotechnology Bioinformatics jobs in Virginia are:
What are popular job titles related to Biotechnology Bioinformatics jobs in Virginia? For Biotechnology Bioinformatics jobs in Virginia, the most frequently searched job titles are:
What cities in Virginia are hiring for Biotechnology Bioinformatics jobs? Cities in Virginia with the most Biotechnology Bioinformatics job openings:
Infographic showing various Biotechnology Bioinformatics job openings in Virginia as of July 2026, with employment types broken down into 80% Full Time, 14% Part Time, 3% Temporary, 1% Contract, and 2% Nights. Highlights an 79% Physical, 3% Hybrid, and 18% Remote job distribution, with an average salary of $93,664 per year, or $45 per hour.

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Re-posted 6 days ago


Job description

Narrative Overview CRDF Global is looking to deepen our bench of experts in support of our Biosecurity programming that aims to promote responsible science and technology development and prevent the deployment of biological weapons (BW) or the acquisition of BW-applicable materials and data. The program also seeks to protect U.S. biotechnologies and bio-pharmaceutical supply chains by denying adversaries access to genomic data, biotechnology intellectual property, and manufacturing capacity

This portfolio supports partner countries in strengthening laboratory biosafety and biosecurity, building research oversight capacity, and promoting adoption of U.S. standards and norms for laboratory security, cybersecurity, and data protection. Regions include Africa, EAP, EUR, NEA, SCA, and WHA, with a focus on countries with growing biotech sectors, genomic sequencing centers, and high containment laboratories (HCLs)

Core Technical Domains: Experts are sought in the following areas (including but not limited to): Pathogen Security & Biosafety Secure handling of high-consequence pathogens (), laboratory containment (BSL-2/3/4), development of laboratory safety and security management systems. Strengthening operations & maintenance practices for HCLs and biorepositories to prevent accidental or deliberate release Data (Genomic Data) Security & Biotechnology Security Protecting sensitive genomic sequencing data and bioinformatics pipelines. Secure collaboration practices for genomic and synthetic biology research, including data use/transfer agreements (DTAs/DUAs), tech transfer agreements, and IP protection agreements Bioinformatics and Emerging Biotechnologies Synthetic biology, gene editing (e.g., CRISPR), computational pipelines with dual-use potential

Supply Chain Security for Biological Materials Risk mitigation for sourcing and distribution of biological reagents, specialized equipment, and consumables. Partnering with manufacturers and distributors to harden supply chains/ identify chokepoints. Cyberbiosecurity Applying cryptographic and access control solutions for sensitive data.

Securing genomic databases, patient data, and bioinformatics pipelines from exfiltration or manipulation. Cross-Cutting Security and Governance Domains: Experts should also demonstrate experience in at least one of the exampled categories or related activities: Best Practices and Regulatory Compliance: Train scientific communities, such as those in biotech sectors, working with toxins, conducting synthetic biology, and storing/ housing human genomic data on security best practices. Risk Assessment & Gap Analysis: Institutional and national-level analysis of biosafety/biosecurity vulnerabilities.

Personnel Reliability & Insider Threat Mitigation: Programs for staff vetting, monitoring, and training. Research Ethics & Oversight: Development and training of institutional biosafety committees (IBCs) and DURC review (research oversight) systems. Operations and Maintenance (O&M): Strengthen O&M practices for HCLs and biorepositories to mitigate risks of unintentional pathogen release due to failing infrastructure and equipment.

U.S. Policy and Best Practices: Understanding of U.S. policy and best practices for biosafety/biosecurity, cybersecurity, research oversight, gain-of-function research, nucleic acid synthesis screening, etc

Public-Private Engagement: Facilitating industry dialogues to promote secure practices and U.S.-aligned standards in biotechnology sectors. Open-Source Research: Ability to draft/produce, compile, and summarize open-source research reports for incorporation into project planning or project implementation. Counter China/ U.S

Adversaries Expertise: Working knowledge of threats posed by U.S. adversaries (state actors) to undermine/ threaten U.S. national and economic security

Understanding of the International Landscape for Biotechnology: Demonstrate understanding of foreign biotechnology sectors, including the key players and contacts, maturity of given sectors, and strategies to encourage engagement on programming, to include but not limited to private biotech companies, R&D start-ups, vaccine/medical countermeasure developers and producers Illustrative Activities Experts on the Biosecurity bench may be asked to: Engage industry and government stakeholders in supply chain security dialogues and policy development. Support proposal development with subject-matter expertise to strengthen competitive bids. Conduct biosafety and biosecurity gap analyses of laboratories, repositories, and biotech firms.

Deliver training programs for laboratory staff, administrators, IT managers, and policymakers. Support development of SOPs, curricula, and toolkits for safe and secure research practices. Lead tabletop exercises and simulations to stress-test partner capacity for outbreak response or insider threat events.

Provide cybersecurity training and incident response planning tailored to biological facilities. Assist partners with institutionalizing research oversight mechanisms and integrating them into national regulatory frameworks.