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Microbiome Bioinformatics Jobs (NOW HIRING)

Founded in 2020 and built by microbiome scientists and physicians, our testing platform reveals ... The Opportunity As Bioinformatics Technician, you will operate and maintain aspects of our ...

Lead scientific delivery of complex microbiome studies while actively contributing to bioinformatics and statistical analysis, interpretation, and reporting * Translate scientific questions into ...

Bioinformatics Specialist We have an opportunity to be a Part-time Bioinformatics Specialist to ... Our work combines immunology, stem cell biology, host-microbiome interactions, and reproductive ...

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Microbiome Bioinformatics information

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$49K

$203.5K

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How much do microbiome bioinformatics jobs pay per year?

As of Sep 10, 2026, the average yearly pay for microbiome bioinformatics in the United States is $203,468.00, according to ZipRecruiter salary data. Most workers in this role earn between $78,500.00 and $400,000.00 per year, depending on experience, location, and employer.

What is microbiome bioinformatics?

Microbiome bioinformatics is a specialized field that combines computational tools and biological knowledge to analyze and interpret data about microbial communities, such as bacteria, viruses, and fungi, found in environments like the human gut, soil, or oceans. Professionals in this area use techniques like DNA sequencing, metagenomics, and statistical modeling to study how these microbial communities function and interact. The insights gained can inform research in health, agriculture, environmental science, and more. This interdisciplinary field requires knowledge of biology, computer science, and statistics.

What are the key skills and qualifications needed to thrive as a microbiome bioinformatics specialist?

To thrive as a Microbiome Bioinformatics Specialist, you need a strong background in biology, microbiology, statistics, and computational analysis, often supported by an advanced degree in bioinformatics or a related field. Familiarity with programming languages (such as Python or R), command-line tools, sequencing data analysis software, and platforms like QIIME2 or Mothur is typically required. Attention to detail, problem-solving abilities, and effective communication skills help professionals interpret complex data and collaborate with interdisciplinary teams. These skills are crucial for accurately analyzing microbial datasets and delivering actionable scientific insights that drive research and innovation.

What are some common challenges encountered when analyzing microbiome data as a bioinformatician?

One common challenge in microbiome bioinformatics is managing and interpreting large, complex datasets that often contain high levels of noise and variability. Bioinformaticians must carefully select appropriate pipelines and statistical methods to ensure accurate results, as choices in preprocessing, normalization, and taxonomic assignment can significantly impact findings. Additionally, integrating multi-omics data (like metagenomics, metatranscriptomics, or metabolomics) can be technically demanding and requires collaboration with wet lab scientists and statisticians. Staying current with rapidly evolving tools and databases is also crucial for producing robust analyses.

What is the difference between Microbiome Bioinformatics vs Microbial Genomics Specialist?

AspectMicrobiome BioinformaticsMicrobial Genomics Specialist
Required CredentialsBSc/MSc in Bioinformatics, Microbiology, or related fieldsBSc/MSc in Microbiology, Genomics, or related fields
Work EnvironmentResearch labs, biotech companies, academic institutionsResearch labs, biotech firms, genomics centers
Industry UsageAnalyzing microbiome data, ecological studiesGenomic sequencing, microbial genome analysis
Common Search/ComparisonYesYes

Microbiome Bioinformatics focuses on analyzing microbial communities within environments or hosts, emphasizing ecological and functional insights. In contrast, Microbial Genomics Specialists primarily work on sequencing and analyzing individual microbial genomes. Both roles require bioinformatics skills and often overlap in research settings, but their core focus areas differ—microbiome bioinformatics centers on community-level data, while microbial genomics emphasizes genome-level analysis.

What are the available jobs in gut microbiome bioinformatics?

Jobs in gut microbiome bioinformatics include roles such as bioinformatics analyst, research scientist, and computational biologist, focusing on analyzing microbiome sequencing data and developing algorithms. These positions often require skills in programming, data analysis, and familiarity with microbiome research tools like QIIME or MetaPhlAn. Opportunities are available in academic, biotech, and pharmaceutical sectors, with some roles requiring advanced degrees and experience in microbiology or bioinformatics.
Infographic showing various Microbiome Bioinformatics job openings in the United States as of September 2026, with employment types broken down into 86% Full Time, 12% Part Time, and 2% Contract. Highlights an 75% Physical, 4% Hybrid, and 21% Remote job distribution, with an average salary of $203,468 per year, or $97.8 per hour.

Microbiome Computational Scientist

Boston, MA • On-site

Full-time

Re-posted 26 days ago


Mass General Brigham rating

8.0

Company rating: 8.0 out of 10

Based on 349 frontline employees who took The Breakroom Quiz

90th of 898 rated healthcare providers


Job description

Site: The Brigham and Women's Hospital, Inc.


Mass General Brigham relies on a wide range of professionals, including doctors, nurses, business people, tech experts, researchers, and systems analysts to advance our mission. As a not-for-profit, we support patient care, research, teaching, and community service, striving to provide exceptional care. We believe that high-performing teams drive groundbreaking medical discoveries and invite all applicants to join us and experience what it means to be part of Mass General Brigham.


Job Summary

PLEASE SUBMIT A COVER LETTER WITH YOUR APPLICATION.
The Microbiome AI/Deep Learning Lab in the Massachusetts Host-Microbiome Center and Division of Computational Pathology at Brigham and Women's Hospital/Harvard Medical School is seeking a computational scientist with experience in microbiome bioinformatics and machine learning. You will develop, deploy, and apply microbiome and bioinformatics machine learning approaches, with a special emphasis on deep learning, to a variety of microbiology data sources. Applications will include forecasting microbial population dynamics in the gut, characterizing the impact of spatial structure of the microbiome, predicting impact of the microbiome on host phenotype, tracking infections in human populations, elucidating microbial metabolism, and discovering functions of uncharacterized microbial metabolites and proteins.
Applicants should have a high level of interest in:
A long-term career in an academic medical environment, with the potential for your work to have a direct impact on healthcare outcomes.
Applying new deep learning technologies to biomedical problems.
Advancing knowledge of the microbiome and its role in human health and disease.
Working on an interdisciplinary team and collaborating with computational, wet lab and clinical scientists.
Engaging with the broader research community to advance applications of AI/deep learning for the microbiome.
About the environment: The Microbiome AI/Deep Learning Lab is an initiative within the Massachusetts Host-Microbiome Center (MHMC) and the Division of Computational Pathology (DCP) at Brigham and Women's Hospital (BWH)/Harvard Medical School (HMS). With recent funding from the Massachusetts Life Sciences Center, the Lab has built a state-of-the-art compute cluster with extensive GPU and CPU nodes, with the objective of making advanced deep learning technologies broadly available to microbiome researchers. The MHMC is a research and core facility that has worked with 100+ groups in the US and internationally to promote understanding of host-microbiome interactions in health and disease, emphasizing a focus on function to define causative effects of the microbiota and to harness this knowledge in developing new therapies, diagnostics and further commercial applications. The DCP is a research division with a broad mandate to develop and apply advanced computational methods for furthering the understanding, diagnosis and treatment of human diseases. BWH is an HMS affiliated teaching hospital, adjacent to the HMS main quad, and the second largest non-university recipient of NIH research funding.
PRINCIPAL DUTIES AND RESPONSIBILITIES:
Engage in research developing and applying bioinformatic and machine learning approaches, for a variety of microbiology data sources, including next generation sequencing and metabolomic data.
Substantially contribute to scientific publications and grant applications.
Analyze datasets and produce visualizations and written reports about scientific findings.
Deploy computational pipelines on local workstations and on high performance CPU and GPU clusters.
Organize and curate large datasets using structured approaches, including database systems.
Engage with trainees and other users of the MHMC to facilitate use of computing resources and application of machine learning technologies for the microbiome.
Other duties as assigned.


Qualifications

QUALIFICATIONS:

  • PhD in Computational Biology, Computer Science, or related quantitative discipline.
  • Experience analyzing microbiome data and machine learning applications demonstrated through authorship on high-quality, peer-reviewed scientific publications.
  • 3+ years minimum Python programming experience.
  • 3+ years minimum experience working in high-performance computing environments.
  • Experience with microbiome bioinformatics methods and pipelines for next generation sequencing data analysis.
  • Experience with organizing and managing large multi-omics datasets.
  • Strong verbal and written communication, and interpersonal skills.
  • Experience with deep learning and PyTorch is highly desired

SKILLS/ABILITIES/COMPETENCIES REQUIRED:

  • Must be capable of contributing within an interdisciplinary team, exhibit a high level of initiative, and have an eagerness to learn new technologies.
  • Ability to manage entire projects in a research environment, from design to implementation, and interpretation of final results.
  • Must have experience analyzing microbiome data.
  • Must possess advanced knowledge of machine learning, including model development, training, testing and deploying.
  • Demonstrated ability to develop and implement computational approaches for analyzing complex biomedical datasets including next generation sequencing data.
  • Demonstrated ability to manage large and complex biomedical datasets, using tools such as databases.
  • Excellent written and verbal communication skills with demonstrated ability to communicate complex results to both technical and non-technical audiences, through publications and presentations.
  • Ability to implement machine learning methods in Python; experience with deep learning and using PyTorch is highly desired.
  • Knowledge of software engineering best practices, including source code management/control (e.g., Git) and containerization approaches.
  • Experience with high-performance computing environments, including scheduling systems, e.g., SLURM.
  • Ability to multitask and prioritize work, to achieve desired goals and deliverables.
  • Ability to share expertise, coach, and give general direction to others of different skill sets, backgrounds and levels.


Additional Job Details (if applicable)


Remote Type

Onsite


Work Location

60 Fenwood Road


Scheduled Weekly Hours

40


Employee Type

Regular


Work Shift

Day (United States of America)


Pay Range

$93,953.60 - $136,739.20/Annual


Grade

7


At Mass General Brigham, we believe in recognizing and rewarding the unique value each team member brings to our organization. Our approach to determining base pay is comprehensive, and any offer extended will take into account your skills, relevant experience if applicable, education, certifications and other essential factors. The base pay information provided offers an estimate based on the minimum job qualifications; however, it does not encompass all elements contributing to your total compensation package. In addition to competitive base pay, we offer comprehensive benefits, career advancement opportunities, differentials, premiums and bonuses as applicable and recognition programs designed to celebrate your contributions and support your professional growth. We invite you to apply, and our Talent Acquisition team will provide an overview of your potential compensation and benefits package.


EEO Statement:

2200 The Brigham and Women's Hospital, Inc. is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religious creed, national origin, sex, age, gender identity, disability, sexual orientation, military service, genetic information, and/or other status protected under law. We will ensure that all individuals with a disability are provided a reasonable accommodation to participate in the job application or interview process, to perform essential job functions, and to receive other benefits and privileges of employment. To ensure reasonable accommodation for individuals protected by Section 503 of the Rehabilitation Act of 1973, the Vietnam Veteran's Readjustment Act of 1974, and Title I of the Americans with Disabilities Act of 1990, applicants who require accommodation in the job application process may contact Human Resources at (857)-282-7642.


Mass General Brigham Competency Framework

At Mass General Brigham, our competency framework defines what effective leadership "looks like" by specifying which behaviors are most critical for successful performance at each job level. The framework is comprised of ten competencies (half People-Focused, half Performance-Focused) and are defined by observable and measurable skills and behaviors that contribute to workplace effectiveness and career success. These competencies are used to evaluate performance, make hiring decisions, identify development needs, mobilize employees across our system, and establish a strong talent pipeline.


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