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1. Addressing the climate crisis through engineering biology

2. Cocultivation of Anaerobic Fungi with Rumen Bacteria Establishes an Antagonistic Relationship

3. Hydrolysis of untreated lignocellulosic feedstock is independent of S-lignin composition in newly classified anaerobic fungal isolate, Piromyces sp. UH3-1

4. Anaerobic Fungal Mevalonate Pathway Genomic Biases Lead to Heterologous Toxicity Underpredicted by Codon Adaptation Indices

5. Genomic analysis of methanogenic archaea reveals a shift towards energy conservation

6. Mitochondrial targeting increases specific activity of a heterologous valine assimilation pathway in Saccharomyces cerevisiae

8. Repurposing the Homing Endonuclease I-SceI for Positive Selection and Development of Gene-Editing Technologies

9. NgAgo possesses guided DNA nicking activity

10. Bacterial Production of Barley Stripe Mosaic Virus Biotemplates for Palladium Nanoparticle Growth

11. Leveraging anaerobic fungi for biotechnology

12. Anaerobic gut fungi are an untapped reservoir of natural products

13. Development of a Fast Organic Extraction-Precipitation Method for Improved Purification of Elastin-Like Polypeptides That Is Independent of Sequence and Molecular Weight

14. Hydrolysis of lignocellulose by anaerobic fungi produces free sugars and organic acids for two-stage fine chemical production with Kluyveromyces marxianus

15. Engineering Tobacco Mosaic Virus and Its Virus-Like-Particles for Synthesis of Biotemplated Nanomaterials

16. Engineering Tobacco Mosaic Virus, Barley Stripe Mosaic Virus, and their Virus-Like-Particles for Synthesis of Biotemplated Nanomaterials

17. 17 The Biotechnological Potential of Anaerobic Gut Fungi

18. Biomass‐degrading enzymes are catabolite repressed in anaerobic gut fungi

19. Anaerobic Fungal Mevalonate Pathway Genomic Biases Lead to Heterologous Toxicity Underpredicted by Codon Adaptation Indices

20. The importance of sourcing enzymes from non-conventional fungi for metabolic engineering and biomass breakdown

21. Exploiting the natural product potential of fungi with integrated -omics and synthetic biology approaches

22. Genomic analysis of methanogenic archaea reveals a shift towards energy conservation

23. NgAgo DNA endonuclease activity enhances homologous recombination in E. coli

24. Xanthobacter-dominated biofilm as a novel source for high-value rhamnose

25. Fungal diversity notes 253–366: taxonomic and phylogenetic contributions to fungal taxa

26. Catabolic repression in early-diverging anaerobic fungi is partially mediated by natural antisense transcripts

27. Metabolic characterization of anaerobic fungi provides a path forward for bioprocessing of crude lignocellulose

28. A parts list for fungal cellulosomes revealed by comparative genomics

29. Extracting data from the muck: deriving biological insight from complex microbial communities and non-model organisms with next generation sequencing

30. Anaerobic gut fungi: Advances in isolation, culture, and cellulolytic enzyme discovery for biofuel production

31. Mapping the membrane proteome of anaerobic gut fungi identifies a wealth of carbohydrate binding proteins and transporters

33. Tuning Primary Metabolism for Heterologous Pathway Productivity

34. Engineering microbes with synthetic biology frameworks

35. Robust and effective methodologies for cryopreservation and DNA extraction from anaerobic gut fungi

36. Fungal diversity notes 111–252—taxonomic and phylogenetic contributions to fungal taxa

37. Anaerobic gut fungi: Advances in isolation, culture, and cellulolytic enzyme discovery for biofuel production

38. A dynamic metabolite valve for the control of central carbon metabolism

39. The zero-sum game of pathway optimization: emerging paradigms for tuning gene expression

40. Synthetic metabolism: engineering biology at the protein and pathway scales

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