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Functional characterization of squalene synthase and squalene epoxidase in Taraxacum koksaghyz

The Russian dandelion Taraxacum koksaghyz produces high‐value isoprenoids such as pentacyclic triterpenes and natural rubber in the latex of specialized cells known as laticifers. Squalene synthase (SQS) and squalene epoxidase (SQE) catalyze key steps in the biosynthesis of cyclic terpenoids, but ne...

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Autores principales: Unland, Kristina, Pütter, Katharina M., Vorwerk, Kirsten, van Deenen, Nicole, Twyman, Richard M., Prüfer, Dirk, Schulze Gronover, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6508512/
https://www.ncbi.nlm.nih.gov/pubmed/31245726
http://dx.doi.org/10.1002/pld3.63
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author Unland, Kristina
Pütter, Katharina M.
Vorwerk, Kirsten
van Deenen, Nicole
Twyman, Richard M.
Prüfer, Dirk
Schulze Gronover, Christian
author_facet Unland, Kristina
Pütter, Katharina M.
Vorwerk, Kirsten
van Deenen, Nicole
Twyman, Richard M.
Prüfer, Dirk
Schulze Gronover, Christian
author_sort Unland, Kristina
collection PubMed
description The Russian dandelion Taraxacum koksaghyz produces high‐value isoprenoids such as pentacyclic triterpenes and natural rubber in the latex of specialized cells known as laticifers. Squalene synthase (SQS) and squalene epoxidase (SQE) catalyze key steps in the biosynthesis of cyclic terpenoids, but neither enzyme has yet been characterized in T. koksaghyz. Genomic analysis revealed the presence of two genes (TkSQS1 and TkSQS2) encoding isoforms of SQS, and four genes (TkSQE1–4) encoding isoforms of SQE. Spatial expression analysis in different T. koksaghyz tissues confirmed that TkSQS1 and TkSQE1 are the latex‐predominant isoforms, with highly similar mRNA expression profiles. The TkSQS1 and TkSQE1 proteins colocalized in the endoplasmic reticulum membrane and their enzymatic functions were confirmed by in vitro activity assays and yeast complementation studies, respectively. The functions of TkSQS1 and TkSQE1 were further characterized in the latex of T. koksaghyz plants with depleted TkSQS1 or TkSQE1 mRNA levels, produced by RNA interference. Comprehensive expression analysis revealed the coregulation of TkSQS1 and TkSQE1, along with a downstream gene in the triterpene biosynthesis pathway encoding the oxidosqualene cyclase TkOSC1. This indicates that the coregulation of TkSQS1, TkSQE1, and TkOSC1 could be used to optimize the flux toward specific terpenoids during development.
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spelling pubmed-65085122019-06-26 Functional characterization of squalene synthase and squalene epoxidase in Taraxacum koksaghyz Unland, Kristina Pütter, Katharina M. Vorwerk, Kirsten van Deenen, Nicole Twyman, Richard M. Prüfer, Dirk Schulze Gronover, Christian Plant Direct Original Research The Russian dandelion Taraxacum koksaghyz produces high‐value isoprenoids such as pentacyclic triterpenes and natural rubber in the latex of specialized cells known as laticifers. Squalene synthase (SQS) and squalene epoxidase (SQE) catalyze key steps in the biosynthesis of cyclic terpenoids, but neither enzyme has yet been characterized in T. koksaghyz. Genomic analysis revealed the presence of two genes (TkSQS1 and TkSQS2) encoding isoforms of SQS, and four genes (TkSQE1–4) encoding isoforms of SQE. Spatial expression analysis in different T. koksaghyz tissues confirmed that TkSQS1 and TkSQE1 are the latex‐predominant isoforms, with highly similar mRNA expression profiles. The TkSQS1 and TkSQE1 proteins colocalized in the endoplasmic reticulum membrane and their enzymatic functions were confirmed by in vitro activity assays and yeast complementation studies, respectively. The functions of TkSQS1 and TkSQE1 were further characterized in the latex of T. koksaghyz plants with depleted TkSQS1 or TkSQE1 mRNA levels, produced by RNA interference. Comprehensive expression analysis revealed the coregulation of TkSQS1 and TkSQE1, along with a downstream gene in the triterpene biosynthesis pathway encoding the oxidosqualene cyclase TkOSC1. This indicates that the coregulation of TkSQS1, TkSQE1, and TkOSC1 could be used to optimize the flux toward specific terpenoids during development. John Wiley and Sons Inc. 2018-06-13 /pmc/articles/PMC6508512/ /pubmed/31245726 http://dx.doi.org/10.1002/pld3.63 Text en © 2018 The Authors. Plant Direct published by American Society of Plant Biologists, Society for Experimental Biology and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Unland, Kristina
Pütter, Katharina M.
Vorwerk, Kirsten
van Deenen, Nicole
Twyman, Richard M.
Prüfer, Dirk
Schulze Gronover, Christian
Functional characterization of squalene synthase and squalene epoxidase in Taraxacum koksaghyz
title Functional characterization of squalene synthase and squalene epoxidase in Taraxacum koksaghyz
title_full Functional characterization of squalene synthase and squalene epoxidase in Taraxacum koksaghyz
title_fullStr Functional characterization of squalene synthase and squalene epoxidase in Taraxacum koksaghyz
title_full_unstemmed Functional characterization of squalene synthase and squalene epoxidase in Taraxacum koksaghyz
title_short Functional characterization of squalene synthase and squalene epoxidase in Taraxacum koksaghyz
title_sort functional characterization of squalene synthase and squalene epoxidase in taraxacum koksaghyz
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6508512/
https://www.ncbi.nlm.nih.gov/pubmed/31245726
http://dx.doi.org/10.1002/pld3.63
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