Using reactions chosen from the Full Terpene Biosynthesis Toolkit (shown below), provide a plausible biosynthetic pathway, including curly arrow mechanisms (except for redox steps), from DMAPP and IPP to the terpene shown below. Full Terpene Biosynthesis Toolkit: Initiation by loss of OPP Initiation by protonation of an alkene. Propagation by resonance. Propagation by addition of an alkene. Propagation by Wagner - Meerwein rearrangement. Termination by addition of a nucleophile. Termination by elimination. Termination by 1,3-deprotonation. Hydrolysis of OPP to an OH group. Redox processes.No Using reactions chosen from the Full Terpene Biosynthesis Toolkit (shown below), provide a plausible biosynthetic pathway, including curly arrow mechanisms (except for redox steps), from DMAPP and IPP to the terpene shown below. OPP DMAPP multiple steps OPP IPP Full Terpene Biosynthesis Toolkit: Initiation by loss of OPP. Initiation by protonation of an alkene. Propagation by resonance. Propagation by addition of an alkene. Propagation by Wagner-Meerwein rearrangement. Termination by addition of a nucleophile. Termination by elimination. Termination by 1,3-deprotonation. Hydrolysis of OPP to an OH group. Redox processes. OH OH

Organic Chemistry
8th Edition
ISBN:9781305580350
Author:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Publisher:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Chapter10: Alcohols
Section: Chapter Questions
Problem 10.52P: Alcohols are important for organic synthesis, especially in situations involving alkenes. The...
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Using reactions chosen from the Full Terpene Biosynthesis Toolkit (shown below), provide a plausible biosynthetic
pathway, including curly arrow mechanisms (except for redox steps), from DMAPP and IPP to the terpene shown below.
Full Terpene Biosynthesis Toolkit:
Initiation by loss of OPP
Initiation by protonation of an alkene.
Propagation by resonance.
Propagation by addition of an alkene.
Propagation by Wagner - Meerwein rearrangement.
Termination by addition of a nucleophile.
Termination by elimination.
Termination by 1,3-deprotonation.
Hydrolysis of OPP to an OH group.
Redox processes.No
Using reactions chosen from the Full Terpene Biosynthesis Toolkit (shown below), provide a plausible biosynthetic
pathway, including curly arrow mechanisms (except for redox steps), from DMAPP and IPP to the terpene shown
below.
OPP
DMAPP
multiple steps
OPP
IPP
Full Terpene Biosynthesis Toolkit:
Initiation by loss of OPP.
Initiation by protonation of an alkene.
Propagation by resonance.
Propagation by addition of an alkene.
Propagation by Wagner-Meerwein rearrangement.
Termination by addition of a nucleophile.
Termination by elimination.
Termination by 1,3-deprotonation.
Hydrolysis of OPP to an OH group.
Redox processes.
OH
OH
Transcribed Image Text:Using reactions chosen from the Full Terpene Biosynthesis Toolkit (shown below), provide a plausible biosynthetic pathway, including curly arrow mechanisms (except for redox steps), from DMAPP and IPP to the terpene shown below. Full Terpene Biosynthesis Toolkit: Initiation by loss of OPP Initiation by protonation of an alkene. Propagation by resonance. Propagation by addition of an alkene. Propagation by Wagner - Meerwein rearrangement. Termination by addition of a nucleophile. Termination by elimination. Termination by 1,3-deprotonation. Hydrolysis of OPP to an OH group. Redox processes.No Using reactions chosen from the Full Terpene Biosynthesis Toolkit (shown below), provide a plausible biosynthetic pathway, including curly arrow mechanisms (except for redox steps), from DMAPP and IPP to the terpene shown below. OPP DMAPP multiple steps OPP IPP Full Terpene Biosynthesis Toolkit: Initiation by loss of OPP. Initiation by protonation of an alkene. Propagation by resonance. Propagation by addition of an alkene. Propagation by Wagner-Meerwein rearrangement. Termination by addition of a nucleophile. Termination by elimination. Termination by 1,3-deprotonation. Hydrolysis of OPP to an OH group. Redox processes. OH OH
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