Cargando…

The wheat Lr34 multipathogen resistance gene confers resistance to anthracnose and rust in sorghum

The ability of the wheat Lr34 multipathogen resistance gene (Lr34res) to function across a wide taxonomic boundary was investigated in transgenic Sorghum bicolor. Increased resistance to sorghum rust and anthracnose disease symptoms following infection with the biotrophic pathogen Puccinia purpurea...

Descripción completa

Detalles Bibliográficos
Autores principales: Schnippenkoetter, Wendelin, Lo, Clive, Liu, Guoquan, Dibley, Katherine, Chan, Wai Lung, White, Jodie, Milne, Ricky, Zwart, Alexander, Kwong, Eunjung, Keller, Beat, Godwin, Ian, Krattinger, Simon G., Lagudah, Evans
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5633760/
https://www.ncbi.nlm.nih.gov/pubmed/28301718
http://dx.doi.org/10.1111/pbi.12723
_version_ 1783269953885962240
author Schnippenkoetter, Wendelin
Lo, Clive
Liu, Guoquan
Dibley, Katherine
Chan, Wai Lung
White, Jodie
Milne, Ricky
Zwart, Alexander
Kwong, Eunjung
Keller, Beat
Godwin, Ian
Krattinger, Simon G.
Lagudah, Evans
author_facet Schnippenkoetter, Wendelin
Lo, Clive
Liu, Guoquan
Dibley, Katherine
Chan, Wai Lung
White, Jodie
Milne, Ricky
Zwart, Alexander
Kwong, Eunjung
Keller, Beat
Godwin, Ian
Krattinger, Simon G.
Lagudah, Evans
author_sort Schnippenkoetter, Wendelin
collection PubMed
description The ability of the wheat Lr34 multipathogen resistance gene (Lr34res) to function across a wide taxonomic boundary was investigated in transgenic Sorghum bicolor. Increased resistance to sorghum rust and anthracnose disease symptoms following infection with the biotrophic pathogen Puccinia purpurea and the hemibiotroph Colletotrichum sublineolum, respectively, occurred in transgenic plants expressing the Lr34res ABC transporter. Transgenic sorghum lines that highly expressed the wheat Lr34res gene exhibited immunity to sorghum rust compared to the low‐expressing single copy Lr34res genotype that conferred partial resistance. Pathogen‐induced pigmentation mediated by flavonoid phytoalexins was evident on transgenic sorghum leaves following P. purpurea infection within 24–72 h, which paralleled Lr34res gene expression. Elevated expression of flavone synthase II, flavanone 4‐reductase and dihydroflavonol reductase genes which control the biosynthesis of flavonoid phytoalexins characterized the highly expressing Lr34res transgenic lines 24‐h post‐inoculation with P. purpurea. Metabolite analysis of mesocotyls infected with C. sublineolum showed increased levels of 3‐deoxyanthocyanidin metabolites were associated with Lr34res expression, concomitant with reduced symptoms of anthracnose.
format Online
Article
Text
id pubmed-5633760
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-56337602017-10-23 The wheat Lr34 multipathogen resistance gene confers resistance to anthracnose and rust in sorghum Schnippenkoetter, Wendelin Lo, Clive Liu, Guoquan Dibley, Katherine Chan, Wai Lung White, Jodie Milne, Ricky Zwart, Alexander Kwong, Eunjung Keller, Beat Godwin, Ian Krattinger, Simon G. Lagudah, Evans Plant Biotechnol J Research Articles The ability of the wheat Lr34 multipathogen resistance gene (Lr34res) to function across a wide taxonomic boundary was investigated in transgenic Sorghum bicolor. Increased resistance to sorghum rust and anthracnose disease symptoms following infection with the biotrophic pathogen Puccinia purpurea and the hemibiotroph Colletotrichum sublineolum, respectively, occurred in transgenic plants expressing the Lr34res ABC transporter. Transgenic sorghum lines that highly expressed the wheat Lr34res gene exhibited immunity to sorghum rust compared to the low‐expressing single copy Lr34res genotype that conferred partial resistance. Pathogen‐induced pigmentation mediated by flavonoid phytoalexins was evident on transgenic sorghum leaves following P. purpurea infection within 24–72 h, which paralleled Lr34res gene expression. Elevated expression of flavone synthase II, flavanone 4‐reductase and dihydroflavonol reductase genes which control the biosynthesis of flavonoid phytoalexins characterized the highly expressing Lr34res transgenic lines 24‐h post‐inoculation with P. purpurea. Metabolite analysis of mesocotyls infected with C. sublineolum showed increased levels of 3‐deoxyanthocyanidin metabolites were associated with Lr34res expression, concomitant with reduced symptoms of anthracnose. John Wiley and Sons Inc. 2017-04-20 2017-11 /pmc/articles/PMC5633760/ /pubmed/28301718 http://dx.doi.org/10.1111/pbi.12723 Text en © 2017 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (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 Research Articles
Schnippenkoetter, Wendelin
Lo, Clive
Liu, Guoquan
Dibley, Katherine
Chan, Wai Lung
White, Jodie
Milne, Ricky
Zwart, Alexander
Kwong, Eunjung
Keller, Beat
Godwin, Ian
Krattinger, Simon G.
Lagudah, Evans
The wheat Lr34 multipathogen resistance gene confers resistance to anthracnose and rust in sorghum
title The wheat Lr34 multipathogen resistance gene confers resistance to anthracnose and rust in sorghum
title_full The wheat Lr34 multipathogen resistance gene confers resistance to anthracnose and rust in sorghum
title_fullStr The wheat Lr34 multipathogen resistance gene confers resistance to anthracnose and rust in sorghum
title_full_unstemmed The wheat Lr34 multipathogen resistance gene confers resistance to anthracnose and rust in sorghum
title_short The wheat Lr34 multipathogen resistance gene confers resistance to anthracnose and rust in sorghum
title_sort wheat lr34 multipathogen resistance gene confers resistance to anthracnose and rust in sorghum
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5633760/
https://www.ncbi.nlm.nih.gov/pubmed/28301718
http://dx.doi.org/10.1111/pbi.12723
work_keys_str_mv AT schnippenkoetterwendelin thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT loclive thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT liuguoquan thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT dibleykatherine thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT chanwailung thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT whitejodie thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT milnericky thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT zwartalexander thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT kwongeunjung thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT kellerbeat thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT godwinian thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT krattingersimong thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT lagudahevans thewheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT schnippenkoetterwendelin wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT loclive wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT liuguoquan wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT dibleykatherine wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT chanwailung wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT whitejodie wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT milnericky wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT zwartalexander wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT kwongeunjung wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT kellerbeat wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT godwinian wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT krattingersimong wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum
AT lagudahevans wheatlr34multipathogenresistancegeneconfersresistancetoanthracnoseandrustinsorghum