Cargando…

A barley UDP-glucosyltransferase inactivates nivalenol and provides Fusarium Head Blight resistance in transgenic wheat

Fusarium Head Blight is a disease of cereal crops that causes severe yield losses and mycotoxin contamination of grain. The main causal pathogen, Fusarium graminearum, produces the trichothecene toxins deoxynivalenol or nivalenol as virulence factors. Nivalenol-producing isolates are most prevalent...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Xin, Michlmayr, Herbert, Schweiger, Wolfgang, Malachova, Alexandra, Shin, Sanghyun, Huang, Yadong, Dong, Yanhong, Wiesenberger, Gerlinde, McCormick, Susan, Lemmens, Marc, Fruhmann, Philipp, Hametner, Christian, Berthiller, Franz, Adam, Gerhard, Muehlbauer, Gary J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5447872/
https://www.ncbi.nlm.nih.gov/pubmed/28407119
http://dx.doi.org/10.1093/jxb/erx109
_version_ 1783239439784345600
author Li, Xin
Michlmayr, Herbert
Schweiger, Wolfgang
Malachova, Alexandra
Shin, Sanghyun
Huang, Yadong
Dong, Yanhong
Wiesenberger, Gerlinde
McCormick, Susan
Lemmens, Marc
Fruhmann, Philipp
Hametner, Christian
Berthiller, Franz
Adam, Gerhard
Muehlbauer, Gary J.
author_facet Li, Xin
Michlmayr, Herbert
Schweiger, Wolfgang
Malachova, Alexandra
Shin, Sanghyun
Huang, Yadong
Dong, Yanhong
Wiesenberger, Gerlinde
McCormick, Susan
Lemmens, Marc
Fruhmann, Philipp
Hametner, Christian
Berthiller, Franz
Adam, Gerhard
Muehlbauer, Gary J.
author_sort Li, Xin
collection PubMed
description Fusarium Head Blight is a disease of cereal crops that causes severe yield losses and mycotoxin contamination of grain. The main causal pathogen, Fusarium graminearum, produces the trichothecene toxins deoxynivalenol or nivalenol as virulence factors. Nivalenol-producing isolates are most prevalent in Asia but co-exist with deoxynivalenol producers in lower frequency in North America and Europe. Previous studies identified a barley UDP-glucosyltransferase, HvUGT13248, that efficiently detoxifies deoxynivalenol, and when expressed in transgenic wheat results in high levels of type II resistance against deoxynivalenol-producing F. graminearum. Here we show that HvUGT13248 is also capable of converting nivalenol into the non-toxic nivalenol-3-O-β-d-glucoside. We describe the enzymatic preparation of a nivalenol-glucoside standard and its use in development of an analytical method to detect the nivalenol-glucoside conjugate. Recombinant Escherichia coli expressing HvUGT13248 glycosylates nivalenol more efficiently than deoxynivalenol. Overexpression in yeast, Arabidopsis thaliana, and wheat leads to increased nivalenol resistance. Increased ability to convert nivalenol to nivalenol-glucoside was observed in transgenic wheat, which also exhibits type II resistance to a nivalenol-producing F. graminearum strain. Our results demonstrate the HvUGT13248 can act to detoxify deoxynivalenol and nivalenol and provide resistance to deoxynivalenol- and nivalenol-producing Fusarium.
format Online
Article
Text
id pubmed-5447872
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-54478722017-06-02 A barley UDP-glucosyltransferase inactivates nivalenol and provides Fusarium Head Blight resistance in transgenic wheat Li, Xin Michlmayr, Herbert Schweiger, Wolfgang Malachova, Alexandra Shin, Sanghyun Huang, Yadong Dong, Yanhong Wiesenberger, Gerlinde McCormick, Susan Lemmens, Marc Fruhmann, Philipp Hametner, Christian Berthiller, Franz Adam, Gerhard Muehlbauer, Gary J. J Exp Bot Research Paper Fusarium Head Blight is a disease of cereal crops that causes severe yield losses and mycotoxin contamination of grain. The main causal pathogen, Fusarium graminearum, produces the trichothecene toxins deoxynivalenol or nivalenol as virulence factors. Nivalenol-producing isolates are most prevalent in Asia but co-exist with deoxynivalenol producers in lower frequency in North America and Europe. Previous studies identified a barley UDP-glucosyltransferase, HvUGT13248, that efficiently detoxifies deoxynivalenol, and when expressed in transgenic wheat results in high levels of type II resistance against deoxynivalenol-producing F. graminearum. Here we show that HvUGT13248 is also capable of converting nivalenol into the non-toxic nivalenol-3-O-β-d-glucoside. We describe the enzymatic preparation of a nivalenol-glucoside standard and its use in development of an analytical method to detect the nivalenol-glucoside conjugate. Recombinant Escherichia coli expressing HvUGT13248 glycosylates nivalenol more efficiently than deoxynivalenol. Overexpression in yeast, Arabidopsis thaliana, and wheat leads to increased nivalenol resistance. Increased ability to convert nivalenol to nivalenol-glucoside was observed in transgenic wheat, which also exhibits type II resistance to a nivalenol-producing F. graminearum strain. Our results demonstrate the HvUGT13248 can act to detoxify deoxynivalenol and nivalenol and provide resistance to deoxynivalenol- and nivalenol-producing Fusarium. Oxford University Press 2017-04-01 2017-04-12 /pmc/articles/PMC5447872/ /pubmed/28407119 http://dx.doi.org/10.1093/jxb/erx109 Text en © The Author 2017. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/4.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Li, Xin
Michlmayr, Herbert
Schweiger, Wolfgang
Malachova, Alexandra
Shin, Sanghyun
Huang, Yadong
Dong, Yanhong
Wiesenberger, Gerlinde
McCormick, Susan
Lemmens, Marc
Fruhmann, Philipp
Hametner, Christian
Berthiller, Franz
Adam, Gerhard
Muehlbauer, Gary J.
A barley UDP-glucosyltransferase inactivates nivalenol and provides Fusarium Head Blight resistance in transgenic wheat
title A barley UDP-glucosyltransferase inactivates nivalenol and provides Fusarium Head Blight resistance in transgenic wheat
title_full A barley UDP-glucosyltransferase inactivates nivalenol and provides Fusarium Head Blight resistance in transgenic wheat
title_fullStr A barley UDP-glucosyltransferase inactivates nivalenol and provides Fusarium Head Blight resistance in transgenic wheat
title_full_unstemmed A barley UDP-glucosyltransferase inactivates nivalenol and provides Fusarium Head Blight resistance in transgenic wheat
title_short A barley UDP-glucosyltransferase inactivates nivalenol and provides Fusarium Head Blight resistance in transgenic wheat
title_sort barley udp-glucosyltransferase inactivates nivalenol and provides fusarium head blight resistance in transgenic wheat
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5447872/
https://www.ncbi.nlm.nih.gov/pubmed/28407119
http://dx.doi.org/10.1093/jxb/erx109
work_keys_str_mv AT lixin abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT michlmayrherbert abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT schweigerwolfgang abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT malachovaalexandra abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT shinsanghyun abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT huangyadong abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT dongyanhong abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT wiesenbergergerlinde abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT mccormicksusan abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT lemmensmarc abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT fruhmannphilipp abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT hametnerchristian abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT berthillerfranz abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT adamgerhard abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT muehlbauergaryj abarleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT lixin barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT michlmayrherbert barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT schweigerwolfgang barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT malachovaalexandra barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT shinsanghyun barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT huangyadong barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT dongyanhong barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT wiesenbergergerlinde barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT mccormicksusan barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT lemmensmarc barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT fruhmannphilipp barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT hametnerchristian barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT berthillerfranz barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT adamgerhard barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat
AT muehlbauergaryj barleyudpglucosyltransferaseinactivatesnivalenolandprovidesfusariumheadblightresistanceintransgenicwheat