Kathryne Caldwell Ford

Works (3)

Updated: November 28th, 2024 05:01

2024 journal article

Beyond low lignin: Identifying the primary barrier to plant biomass conversion by fermentative bacteria

SCIENCE ADVANCES, 10(42).

By: R. Bing n, D. Sulis n, M. Carey n, M. Manesh n, K. Ford n, C. Straub n, T. Laemthong n, B. Alexander n ...

Sources: Web Of Science, ORCID, NC State University Libraries
Added: November 1, 2024

2024 journal article

Engineering ethanologenicity into the extremely thermophilic bacterium Anaerocellum<i> (</i> f. Caldicellulosiriuptor) bescii

METABOLIC ENGINEERING, 86, 99–114.

By: R. Bing n, K. Ford n, D. Willard n, M. Manesh n, C. Straub n, T. Laemthong n, B. Alexander n, T. Tanwee* ...

author keywords: Anaerocellum bescii; Ethanol; Extreme thermophile; Cellulose
Sources: Web Of Science, NC State University Libraries
Added: October 14, 2024

2023 article

The electron transport chain of <i>Shewanella oneidensis</i> MR-1 can operate bidirectionally to enable microbial electrosynthesis

Ford, K. C., Teravest, M. A., & Buan, N. R. (2023, December 20). APPLIED AND ENVIRONMENTAL MICROBIOLOGY.

By: K. Ford*, M. Teravest* & N. Buan

author keywords: microbial electrosynthesis; Shewanella oneidensis; electron transport; oxidases; biocatalysis; bioenergetics; oxygen toxicity; 2,3-butanediol
TL;DR: S sustained production of an industrially relevant chemical driven by a cathode is demonstrated and oxidases use trace dissolved oxygen in a microaerobic bioelectrical chemical system (BES), and the translocation of protons across the membrane during O2 reduction supports 2,3-BDO generation. (via Semantic Scholar)
UN Sustainable Development Goal Categories
Source: Web Of Science
Added: January 16, 2024

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