2004Biopolymers OnlineRequires access

Biosynthesis of Natural Rubber and Other Natural Polyisoprenoids

Norimasa Ohya, Tanetoshi Koyama

Open publisher page 5 citations

Abstract

Abstract Introduction Occurrence of Polyisoprene Chemical Properties of Rubber The Latex Vessel System Composition of Latex Molecular Weight of Rubber Historical Outline Rubber Precursors Rubber Formation on Rubber Particles Stereochemistry of Rubber Biosynthesis Initiator of Rubber Synthesis Biosynthesis Pathway in Hevea brasiliensis Formation of IPP Initiation of Rubber Molecules Chain‐Elongation of Rubber 13C‐NMR Study of Rubber Molecules Enzymes in Hevea brasiliensis Enzymes for the Formation of Mevalonic Acid Enzymes for the Formation of IPP Rubber Transferase Genetic Basis Rubber Biosynthesis‐Related Proteins Defense‐Related Proteins Latex Allergens Other Enzymes in Hevea Rubber Biosynthesis Pathways and Genes in Guayule and other Organisms Guayule Rubber Biosynthesis Rubber Synthesis in Indian Rubber Tree Rubber Synthesis in Fungi Production in Transgenic Plants and Recombinant Microorganisms Outlook and Perspectives Relevant Patents Stimulation of Rubber Yield and Rubber‐Producing Plants Rubber Biosynthetic Genes and their Transformation Synthetic Use of Enzymes from H. brasiliensis Enzymes from Hevea and their DNA Sequences Acknowledgements

About this research paper

What this paper is about

Abstract Introduction Occurrence of Polyisoprene Chemical Properties of Rubber The Latex Vessel System Composition of Latex Molecular Weight of Rubber Historical Outline Rubber Precursors Rubber Formation on Rubber Particles Stereochemistry of Rubber Biosynthesis Initiator of Rubber Synthesis Biosynthesis Pathway in Hevea brasiliensis Formation of IPP Initiation of Rubber Molecules Chain‐Elongation of Rubber 13C‐NMR Study of Rubber Molecules Enzymes in Hevea brasiliensis Enzymes for the Formation of Mevalonic Acid Enzymes for the Formation of IPP Rubber Transferase Genetic Basis Rubber Biosynthesis‐Related Proteins Defense‐Related Proteins Latex Allergens Other Enzymes in Hevea Rubber Biosynthesis Pathways and Genes in Guayule and other Organisms Guayule Rubber Biosynthesis Rubber Synthesis in Indian Rubber Tree Rubber Synthesis in Fungi Production in Transgenic Plants and Recombinant Microorganisms Outlook and Perspectives Relevant Patents Stimulation of Rubber Yield and Rubber‐Producing Plants Rubber Biosynthetic Genes and their Transformation Synthetic Use of Enzymes from H. brasiliensis Enzymes from Hevea and their DNA Sequences Acknowledgements

Why it matters

OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abstract Introduction Occurrence of Polyisoprene Chemical Properties of Rubber The Latex Vessel System Composition of Latex Molecular Weight of Rubber Historical Outline Rubber Precursors Rubber Formation on Rubber Particles Stereochemistry of Rubber Biosynthesis Initiator of Rubber Synthesis Biosynthesis Pathway in Hevea brasiliensis Formation of IPP Initiation of Rubber Molecules Chain‐Elongation of Rubber 13C‐NMR Study of Rubber Molecules Enzymes in Hevea brasiliensis Enzymes for the Formation of Mevalonic Acid Enzymes for the Formation of IPP Rubber Transferase Genetic Basis Rubber Biosynthesis‐Related Proteins Defense‐Related Proteins Latex Allergens Other Enzymes in Hevea Rubber Biosynthesis Pathways and Genes in Guayule and other Organisms Guayule Rubber Biosynthesis Rubber Synthesis in Indian Rubber Tree Rubber Synthesis in Fungi Production in Transgenic Plants and Recombinant Microorganisms Outlook and Perspectives Relevant Patents Stimulation of Rubber Yield and Rubber‐Producing Plants Rubber Biosynthetic Genes and their Transformation Synthetic Use of Enzymes from H. brasiliensis Enzymes from Hevea and their DNA Sequences Acknowledgements

Key concepts: Hevea brasiliensis, Natural rubber, Hevea, Biosynthesis, Enzyme, Biochemistry, Chemistry, Biology

Related papers

Back to paper searchBrowse research topicsOriginal source
Biosynthesis of Natural Rubber and Other Natural Polyisoprenoids — Research Paper | ScholarLens