Transcription factor WOX11 modulates tolerance to cyst nematodes via adventitious lateral root formation

Author:

Willig Jaap-Jan1ORCID,Guarneri Nina1ORCID,van Loon Thomas1ORCID,Wahyuni Sri1ORCID,Astudillo-Estévez Ivan E1ORCID,Xu Lin2ORCID,Willemsen Viola3ORCID,Goverse Aska1ORCID,Sterken Mark G1ORCID,Lozano-Torres José L1ORCID,Bakker Jaap1ORCID,Smant Geert1ORCID

Affiliation:

1. Laboratory of Nematology, Wageningen University & Research , Wageningen 6708 PB , The Netherlands

2. National Key Laboratory of Plant Molecular Genetics, CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology and Ecology, Chinese Academy of Sciences , Shanghai 200032 , China

3. Cluster of Plant Developmental Biology, Cell and Developmental Biology, Wageningen University & Research , Wageningen 6708 PB , The Netherlands

Abstract

Abstract The transcription factor WUSCHEL-RELATED HOMEOBOX 11 (WOX11) in Arabidopsis (Arabidopsis thaliana) initiates the formation of adventitious lateral roots upon mechanical injury in primary roots. Root-invading nematodes also induce de novo root organogenesis leading to excessive root branching, but it is not known if this symptom of disease involves mediation by WOX11 and if it benefits the plant. Here, we show with targeted transcriptional repression and reporter gene analyses in Arabidopsis that the beet cyst nematode Heterodera schachtii activates WOX11-mediated adventitious lateral rooting from primary roots close to infection sites. The activation of WOX11 in nematode-infected roots occurs downstream of jasmonic acid-dependent damage signaling via ETHYLENE RESPONSE FACTOR109, linking adventitious lateral root formation to nematode damage to host tissues. By measuring different root system components, we found that WOX11-mediated formation of adventitious lateral roots compensates for nematode-induced inhibition of primary root growth. Our observations further demonstrate that WOX11-mediated rooting reduces the impact of nematode infections on aboveground plant development and growth. Altogether, we conclude that the transcriptional regulation by WOX11 modulates root system plasticity under biotic stress, which is one of the key mechanisms underlying the tolerance of Arabidopsis to cyst nematode infections.

Funder

Graduate School of Experimental Plant Sciences

Dutch Top Sector Horticulture & Starting Materials

Publisher

Oxford University Press (OUP)

Reference36 articles.

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