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1. Mapping microhabitats of lignocellulose decomposition by a microbial consortium

2. A compendium of multi-omics data illuminating host responses to lethal human virus infections

3. Engineering Rhodosporidium toruloides for production of 3-hydroxypropionic acid from lignocellulosic hydrolysate

4. PeakDecoder enables machine learning-based metabolite annotation and accurate profiling in multidimensional mass spectrometry measurements

5. Itaconic acid production is regulated by LaeA in Aspergillus pseudoterreus

7. Elucidating regulatory processes of intense physical activity by multi-omics analysis

10. Further engineering of R. toruloides for the production of terpenes from lignocellulosic biomass

11. Identification of a specific exporter that enables high production of aconitic acid in Aspergillus pseudoterreus

12. Multi-Omics Driven Metabolic Network Reconstruction and Analysis of Lignocellulosic Carbon Utilization in Rhodosporidium toruloides

13. Integration of Proteomics and Metabolomics Into the Design, Build, Test, Learn Cycle to Improve 3-Hydroxypropionic Acid Production in Aspergillus pseudoterreus.

14. Production of ent-kaurene from lignocellulosic hydrolysate in Rhodosporidium toruloides

15. Multi-Omics Driven Metabolic Network Reconstruction and Analysis of Lignocellulosic Carbon Utilization in Rhodosporidium toruloides.

16. Initiation of fatty acid biosynthesis in Pseudomonas putida KT2440

17. The human body at cellular resolution: the NIH Human Biomolecular Atlas Program

18. Broad Substrate-Specific Phosphorylation Events Are Associated With the Initial Stage of Plant Cell Wall Recognition in Neurospora crassa

19. Muconic acid production from glucose and xylose in Pseudomonas putida via evolution and metabolic engineering

20. Application of multiplexed ion mobility spectrometry towards the identification of host protein signatures of treatment effect in pulmonary tuberculosis

24. Spatial lipidomics maps brain alterations associated with mild traumatic brain injury.

25. A fast and sensitive size-exclusion chromatography method for plasma extracellular vesicle proteomic analysis

26. Surfactant-assisted one-pot sample preparation for label-free single-cell proteomics

30. Coupling Microdroplet-Based Sample Preparation, Multiplexed Isobaric Labeling, and Nanoflow Peptide Fractionation for Deep Proteome Profiling of the Tissue Microenvironment

31. MERS-CoV and H5N1 influenza virus antagonize antigen presentation by altering the epigenetic landscape

32. Engineering transcriptional regulation of pentose metabolism in Rhodosporidium toruloides for improved conversion of xylose to bioproducts

35. SPE-IMS-MS: An automated platform for sub-sixty second surveillance of endogenous metabolites and xenobiotics in biofluids

36. Engineering Rhodosporidium toruloides for production of 3-Hydroxypropionic acid from lignocellulosic Hydrolysate

37. Coupling microdroplet-based sample preparation, multiplexed isobaric labeling, and nanoflow peptide fractionation for deep proteome profiling of tissue microenvironment

38. Itaconic acid production is regulated by LaeA in Aspergillus pseudoterreus

40. New Views of Old Proteins: Clarifying the Enigmatic Proteome

41. New Views of Old Proteins : Clarifying the Enigmatic Proteome

44. Unfolded Protein Response Inhibition Reduces Middle East Respiratory Syndrome Coronavirus-Induced Acute Lung Injury

45. Additional file 1 of Further engineering of R. toruloides for the production of terpenes from lignocellulosic biomass

47. From Plants to Ants: Fungal Modification of Leaf Lipids for Nutrition and Communication in the Leaf-Cutter Ant Fungal Garden Ecosystem

48. Integration of Proteomics and Metabolomics Into the Design, Build, Test, Learn Cycle to Improve 3-Hydroxypropionic Acid Production in Aspergillus pseudoterreus

49. Preserved and variable spatial‐chemical changes of lipids across tomato leaves in response to central vein wounding reveals potential origin of linolenic acid in signal transduction cascade

50. Multi-Omics Driven Metabolic Network Reconstruction and Analysis of Lignocellulosic Carbon Utilization in Rhodosporidium toruloides

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