Arabidopsis bZIP11 Is a Susceptibility Factor During Pseudomonas syringae Infection.
Matthew J PriorJebasingh SelvanayagamJung-Gun KimMonika TomarMartin JonikasMary Beth MudgettSjef SmeekensJohannes HansonWolf B FrommerPublished in: Molecular plant-microbe interactions : MPMI (2021)
The induction of plant nutrient secretion systems is critical for successful pathogen infection. Some bacterial pathogens (e.g., Xanthomonas spp.) use transcription activator-like (TAL) effectors to induce transcription of SWEET sucrose efflux transporters. Pseudomonas syringae pv. tomato strain DC3000 lacks TAL effectors yet is able to induce multiple SWEETs in Arabidopsis thaliana by unknown mechanisms. Because bacteria require other nutrients in addition to sugars for efficient reproduction, we hypothesized that Pseudomonas spp. may depend on host transcription factors involved in secretory programs to increase access to essential nutrients. Bioinformatic analyses identified the Arabidopsis basic-leucine zipper transcription factor bZIP11 as a potential regulator of nutrient transporters, including SWEETs and UmamiT amino acid transporters. Inducible downregulation of bZIP11 expression in Arabidopsis resulted in reduced growth of P. syringae pv. tomato strain DC3000, whereas inducible overexpression of bZIP11 resulted in increased bacterial growth, supporting the hypothesis that bZIP11-regulated transcription programs are essential for maximal pathogen titer in leaves. Our data are consistent with a model in which a pathogen alters host transcription factor expression upstream of secretory transcription networks to promote nutrient efflux from host cells.[Formula: see text] Copyright © 2021 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license.
Keyphrases
- transcription factor
- arabidopsis thaliana
- poor prognosis
- dna binding
- candida albicans
- biofilm formation
- amino acid
- plant growth
- dendritic cells
- public health
- heavy metals
- genome wide identification
- induced apoptosis
- cell proliferation
- binding protein
- escherichia coli
- electronic health record
- signaling pathway
- long non coding rna
- blood pressure
- cell cycle arrest
- type iii
- smoking cessation
- inflammatory response
- nuclear factor
- neural network
- climate change
- human health
- antimicrobial resistance
- preterm birth