Parasitic nematodes modulate PIN-mediated auxin transport to facilitate infection.

Plant-parasitic nematodes are destructive plant pathogens that cause significant yield losses. They induce highly specialized feeding sites (NFS) in infected plant roots from which they withdraw nutrients. In order to establish these NFS, it is thought that the nematodes manipulate the molecular and...

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Main Authors: Wim Grunewald, Bernard Cannoot, Jirí Friml, Godelieve Gheysen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-01-01
Series:PLoS Pathogens
Online Access:http://europepmc.org/articles/PMC2613529?pdf=render
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author Wim Grunewald
Bernard Cannoot
Jirí Friml
Godelieve Gheysen
author_facet Wim Grunewald
Bernard Cannoot
Jirí Friml
Godelieve Gheysen
author_sort Wim Grunewald
collection DOAJ
description Plant-parasitic nematodes are destructive plant pathogens that cause significant yield losses. They induce highly specialized feeding sites (NFS) in infected plant roots from which they withdraw nutrients. In order to establish these NFS, it is thought that the nematodes manipulate the molecular and physiological pathways of their hosts. Evidence is accumulating that the plant signalling molecule auxin is involved in the initiation and development of the feeding sites of sedentary plant-parasitic nematodes. Intercellular transport of auxin is essential for various aspects of plant growth and development. Here, we analysed the spatial and temporal expression of PIN auxin transporters during the early events of NFS establishment using promoter-GUS/GFP fusion lines. Additionally, single and double pin mutants were used in infection studies to analyse the role of the different PIN proteins during cyst nematode infection. Based on our results, we postulate a model in which PIN1-mediated auxin transport is needed to deliver auxin to the initial syncytial cell, whereas PIN3 and PIN4 distribute the accumulated auxin laterally and are involved in the radial expansion of the NFS. Our data demonstrate that cyst nematodes are able to hijack the auxin distribution network in order to facilitate the infection process.
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spelling doaj.art-df2bc6105f744073b1e580f8bfbbce9f2022-12-22T01:47:13ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742009-01-0151e100026610.1371/journal.ppat.1000266Parasitic nematodes modulate PIN-mediated auxin transport to facilitate infection.Wim GrunewaldBernard CannootJirí FrimlGodelieve GheysenPlant-parasitic nematodes are destructive plant pathogens that cause significant yield losses. They induce highly specialized feeding sites (NFS) in infected plant roots from which they withdraw nutrients. In order to establish these NFS, it is thought that the nematodes manipulate the molecular and physiological pathways of their hosts. Evidence is accumulating that the plant signalling molecule auxin is involved in the initiation and development of the feeding sites of sedentary plant-parasitic nematodes. Intercellular transport of auxin is essential for various aspects of plant growth and development. Here, we analysed the spatial and temporal expression of PIN auxin transporters during the early events of NFS establishment using promoter-GUS/GFP fusion lines. Additionally, single and double pin mutants were used in infection studies to analyse the role of the different PIN proteins during cyst nematode infection. Based on our results, we postulate a model in which PIN1-mediated auxin transport is needed to deliver auxin to the initial syncytial cell, whereas PIN3 and PIN4 distribute the accumulated auxin laterally and are involved in the radial expansion of the NFS. Our data demonstrate that cyst nematodes are able to hijack the auxin distribution network in order to facilitate the infection process.http://europepmc.org/articles/PMC2613529?pdf=render
spellingShingle Wim Grunewald
Bernard Cannoot
Jirí Friml
Godelieve Gheysen
Parasitic nematodes modulate PIN-mediated auxin transport to facilitate infection.
PLoS Pathogens
title Parasitic nematodes modulate PIN-mediated auxin transport to facilitate infection.
title_full Parasitic nematodes modulate PIN-mediated auxin transport to facilitate infection.
title_fullStr Parasitic nematodes modulate PIN-mediated auxin transport to facilitate infection.
title_full_unstemmed Parasitic nematodes modulate PIN-mediated auxin transport to facilitate infection.
title_short Parasitic nematodes modulate PIN-mediated auxin transport to facilitate infection.
title_sort parasitic nematodes modulate pin mediated auxin transport to facilitate infection
url http://europepmc.org/articles/PMC2613529?pdf=render
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