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1. Preserving US microbe collections sparks future discoveries

2. Preserving US microbe collections sparks future discoveries.

3. Flavonoids act as negative regulators of auxin transport in vivo in arabidopsis

4. Studies on the Structure and Function of Ribosomal RNA

13. Biotinylated Indoles as Probes for Indole-Binding Proteins

14. Characterization of auxin conjugates in Arabidopsis. Low steady-state levels of indole-3-acetyl-aspartate, indole-3-acetyl-glutamate, and indole-3-acetyl-glucose.

15. Quantification of free plus conjugated indoleacetic acid in arabidopsis requires correction for the nonenzymatic conversion of indolic nitriles.

17. Construction of two Escherichia coli amber suppressor genes: tRNAPheCUA and tRNACysCUA.

19. Identification and expression analysis of methyl jasmonate responsive ESTs in paclitaxel producing Taxus cuspidata suspension culture cells

22. Auxin and Tryptophan Homeostasis Are Facilitated by the ISS1/VAS1 Aromatic Aminotransferase in Arabidopsis.

23. Methyl jasmonate represses growth and affects cell cycle progression in cultured Taxus cells.

24. A large increase in IAA during development of rice grains correlates with the expression of tryptophan aminotransferase OsTAR1 and a grain-specific YUCCA.

25. Contribution of taxane biosynthetic pathway gene expression to observed variability in paclitaxel accumulation in Taxus suspension cultures.

26. Redirection of tryptophan metabolism in tobacco by ectopic expression of an Arabidopsis indolic glucosinolate biosynthetic gene.

27. A high-throughput method for the quantitative analysis of auxins.

28. Aberrant synthesis of indole-3-acetic acid in Saccharomyces cerevisiae triggers morphogenic transition, a virulence trait of pathogenic fungi.

29. Approaching cellular and molecular resolution of auxin biosynthesis and metabolism.

30. Auxin gradients are associated with polarity changes in trees.

31. A high-throughput method for the quantitative analysis of indole-3-acetic acid and other auxins from plant tissue.

32. Sites and regulation of auxin biosynthesis in Arabidopsis roots.

33. The Arabidopsis ATR1 Myb transcription factor controls indolic glucosinolate homeostasis.

34. Trp-dependent auxin biosynthesis in Arabidopsis: involvement of cytochrome P450s CYP79B2 and CYP79B3.

35. Overexpression of a bacterial indole-3-acetyl-l-aspartic acid hydrolase in Arabidopsis thaliana.

36. Redundancy as a way of life - IAA metabolism.

37. Diverse range of gene activity during Arabidopsis thaliana leaf senescence includes pathogen-independent induction of defense-related genes.

38. Construction of Escherichia coli amber suppressor tRNA genes. III. Determination of tRNA specificity.

39. Construction of Escherichia coli amber suppressor tRNA genes. II. Synthesis of additional tRNA genes and improvement of suppressor efficiency.

40. Protein engineering with synthetic Escherichia coli amber suppressor genes.

41. Changing the identity of a transfer RNA.

42. Mischarging mutants of Su+2 glutamine tRNA in E. coli. II. Amino acid specificities of the mutant tRNAs.

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