Journal article
Developing a standard definition for sequences of concern
Frontiers in bioengineering and biotechnology, Vol.14, 1830842
06/01/2026
DOI: 10.3389/fbioe.2026.1830842
Abstract
Readily available nucleic acid synthesis is both critical for the bioeconomy and an increasingly pressing security concern due to the potential for accidental or deliberate misuse. While biosecurity experts broadly agree that nucleic acid providers should screen orders for potential “sequences of concern,” there has previously been no agreed standard for how to define and recognize such sequences. To address this gap, we first organized a collection of test sets containing 1.1 million sequences from pathogens and toxins on the Australia Group Common Control Lists and their non-controlled relatives, along with model organisms and synthetic constructs. An initial categorization of sequences as to whether or not they were sequences of concern was produced by comparing the results of four biosecurity screening systems for each of these sequences, finding that these systems already agreed on the categorization of more than 80% of sequences. We then refined these results through a science-based stakeholder review process to define a rubric for determining whether a sequence should be flagged as a potential sequence of concern, then applied this rubric to improve the categorization of sequences in test sets. The result is a rubric that identifies sequences of concern with respect to human pandemic-potential viruses, key classes of low-risk genes, and controlled toxins. Applying this rubric to the test set collection has, to date, reduced the number of test sequences with disputed categorization by 44.3% for controlled viruses and 10.7% across the collection of test sets as a whole. Together, the rubric and the test sets provide a concrete “sequence of concern” definition that can be used as a foundation for development of biosecurity screening standards and policy and is also continuing to be refined in ongoing work.
Details
- Title: Subtitle
- Developing a standard definition for sequences of concern
- Creators
- Tessa Alexanian - Alliance Bioversity International - CIATJacob Beal - RTX BBN Technologies, Cambridge, MA, United StatesCraig Bartling - BattelleJens Berlips - SecurAcath (United States)Peter A. Carr - RTX BBN Technologies, Cambridge, MA, United StatesAdam Clore - Integrated DNA Technologies (United States)Helena Cozzarini - SecurAcath (United States)James Diggans - Twist Bioscience (United States)Yorgo El Moubayed - Alliance Bioversity International - CIATKevin Esvelt - Massachusetts Institute of TechnologyKevin Flyangolts - Aclid, New York, NY, United StatesLeonard Foner - SecurAcath (United States)Patrick A. Fullerton - BattelleBryan T. Gemler - BattelleCaitlin A. D. Jagla - RTX BBN Technologies, Cambridge, MA, United StatesRassin Lababidi - Alliance Bioversity International - CIATTom Mitchell - RTX BBN Technologies, Cambridge, MA, United StatesSteven T. Murphy - RTX BBN Technologies, Cambridge, MA, United StatesMichael T. Parker - Georgetown UniversityNicholas Roehner - RTX BBN Technologies, Cambridge, MA, United StatesAndre Rusch - Thermo Fisher Scientific (United States)Kemper Talley - RTX BBN Technologies, Cambridge, MA, United StatesTroy Timmerman - RTX BBN Technologies, Cambridge, MA, United StatesNicole E. Wheeler - University of Birmingham
- Resource Type
- Journal article
- Publication Details
- Frontiers in bioengineering and biotechnology, Vol.14, 1830842
- DOI
- 10.3389/fbioe.2026.1830842
- ISSN
- 2296-4185
- eISSN
- 2296-4185
- Publisher
- Frontiers Media S.A
- Grant note
- International Biosecurity and Biosafety Initiative for Science (IBBIS)
The author(s) declared that financial support was received for this work and/or its publication. Funded by Sentinel Bio via support to the International Gene Synthesis Consortium (IGSC) and the International Biosecurity and Biosafety Initiative for Science (IBBIS).
- Language
- English
- Date published
- 06/01/2026
- Academic Unit
- Electrical and Computer Engineering
- Record Identifier
- 9985174711102771
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