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32 results on '"Amiu Shino"'

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1. Developing an Updated Strategy for Estimating the Free-Energy Parameters in RNA Duplexes

2. Multi-Spectroscopic Analysis of Seed Quality and 13C-Stable-Iotopologue Monitoring in Initial Growth Metabolism of Jatropha curcas L.

3. Cellulose Digestion and Metabolism Induced Biocatalytic Transitions in Anaerobic Microbial Ecosystems

4. Solid-, Solution-, and Gas-state NMR Monitoring of 13C-Cellulose Degradation in an Anaerobic Microbial Ecosystem

5. Multi-omics analysis on an agroecosystem reveals the significant role of organic nitrogen to increase agricultural crop yield

6. Exploring the Impact of Food on the Gut Ecosystem Based on the Combination of Machine Learning and Network Visualization

7. Chemical profiling of Jatropha tissues under different torrefaction conditions: application to biomass waste recovery.

8. Cannibalism Affects Core Metabolic Processes in Helicoverpa armigera Larvae—A 2D NMR Metabolomics Study

9. ECOMICS: a web-based toolkit for investigating the biomolecular web in ecosystems using a trans-omics approach.

11. Structure and Metabolic‐Flow Analysis of Molecular Complexity in a 13 C‐Labeled Tree by 2D and 3D NMR

12. Exploring the Impact of Food on the Gut Ecosystem Based on the Combination of Machine Learning and Network Visualization

13. Multi-Spectroscopic Analysis of Seed Quality and 13C-Stable-Iotopologue Monitoring in Initial Growth Metabolism of Jatropha curcas L

14. Cellulose Digestion and Metabolism Induced Biocatalytic Transitions in Anaerobic Microbial Ecosystems

15. Multi-omics analysis on an agroecosystem reveals the significant role of organic nitrogen to increase agricultural crop yield.

16. Characterization of lignocellulose of Erianthus arundinaceus in relation to enzymatic saccharification efficiency

17. Cannibalism Affects Core Metabolic Processes in Helicoverpa armigera Larvae—A 2D NMR Metabolomics Study

18. Spectroscopic investigation of tissue-specific biomass profiling for Jatropha curcas L

19. Introduction of chemically labile substructures into Arabidopsis lignin through the use of LigD, the Cα-dehydrogenase from Sphingobium sp. strain SYK-6

21. Introduction of alkali-labile units into lignin in transgenic plants by genetic engineering

22. Chemical Profiling of Jatropha Tissues under Different Torrefaction Conditions: Application to Biomass Waste Recovery

23. Solid-, Solution-, and Gas-state NMR Monitoring of 13C-Cellulose Degradation in an Anaerobic Microbial Ecosystem.

24. Visualizing set relationships: EVenn's comprehensive approach to Venn diagrams.

25. Integrated Multi-Omics Analysis Reveals Differential Effects of Fructo-Oligosaccharides (FOS) Supplementation on the Human Gut Ecosystem.

26. Structure and Metabolic-Flow Analysis of Molecular Complexity in a 13C-Labeled Tree by 2D and 3D NMR.

27. Introduction of chemically labile substructures into Arabidopsis lignin through the use of LigD, the Cα-dehydrogenase from Sphingobium sp. strain SYK-6.

28. A new entropy model for RNA: part V, Incorporating the Flory-Huggins model in structure prediction and folding.

29. Chemical Profiling of Jatropha Tissues under Different Torrefaction Conditions: Application to Biomass Waste Recovery.

30. A new entropy model for RNA: part III. Is the folding free energy landscape of RNA funnel shaped?

31. A new entropy model for RNA: part III, Is the folding free energy landscape of RNA funnel shaped?

32. Developing an Updated Strategy for Estimating the Free-Energy Parameters in RNA Duplexes.

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