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Possible biosynthesis of gomphilactone

Possible biosynthesis of grevillins

Possible biosynthesis of pamafungins from blennolide C

Possible biosynthesis of pyxiferin after incubation with orsellinic acid.

Possible biosynthesis of quinone methide pigments in Phanerochaete sanguinea

Possible biosynthesis of the xanthone thiomelin

Possible biosynthesis of vitamin B,.

Possible Biosynthesis ofTAN1251 Compounds and FR901483

Possible biosynthetic modes of ring closure to austamide and fumitremorgin

Possible biosynthetic origin of the pheromones of C. lugubris and C, hemipterus.

Possible biosynthetic pathway for salicylic acid in plants. Structural names are given in bold and enzymes in small letters.

Possible biosynthetic pathway from dietary steroids to a-ecdysone.

Possible biosynthetic pathway of 99 41 .

Possible biosynthetic pathway of dTDP-nogalose as proposed by Torkkell et al. . The pathway deviates from deoxysugar biosynthetic routes after formation of the common intermediate dTDP-4-keto-6-deoxy-D-glucose

Possible biosynthetic pathway of phytanic acid from Acetyl CoA

Possible biosynthetic pathway of pterosin B from pterosin A

Possible biosynthetic pathway of pterosins and related compounds

Possible biosynthetic pathway of scopadulan-type and related diterpenoids.

Possible biosynthetic pathway of tropane alkaloids in Hyoscyamus albiis hairy roots transformed with A. rhizogenes MAFF 03-01724.

Possible biosynthetic pathway to asperparaline A

Possible biosynthetic pathway to austamide

Possible biosynthetic pathway to the macrocyclic trichothecenes

Possible biosynthetic pathway to the spirotryprostatins

Possible biosynthetic pathways -reticuline to munitagine in A. gracilenta path B, in A. gracilenta path B, an alternative cyclization from laudanidine to platycerine.

Possible biosynthetic pathways for producing the sex pheromone components Z9-14



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