Literature DB >> 26956666

The Pseudomonas fluorescens Siderophore Pyoverdine Weakens Arabidopsis thaliana Defense in Favor of Growth in Iron-Deficient Conditions.

Pauline Trapet1, Laure Avoscan1, Agnès Klinguer1, Stéphanie Pateyron1, Sylvie Citerne1, Christian Chervin1, Sylvie Mazurier1, Philippe Lemanceau1, David Wendehenne1, Angélique Besson-Bard2.   

Abstract

Pyoverdines are siderophores synthesized by fluorescent Pseudomonas spp. Under iron-limiting conditions, these high-affinity ferric iron chelators are excreted by bacteria in the soil to acquire iron. Pyoverdines produced by beneficial Pseudomonas spp. ameliorate plant growth. Here, we investigate the physiological incidence and mode of action of pyoverdine from Pseudomonas fluorescens C7R12 on Arabidopsis (Arabidopsis thaliana) plants grown under iron-sufficient or iron-deficient conditions. Pyoverdine was provided to the medium in its iron-free structure (apo-pyoverdine), thus mimicking a situation in which it is produced by bacteria. Remarkably, apo-pyoverdine abolished the iron-deficiency phenotype and restored the growth of plants maintained in the iron-deprived medium. In contrast to a P. fluorescens C7R12 strain impaired in apo-pyoverdine production, the wild-type C7R12 reduced the accumulation of anthocyanins in plants grown in iron-deficient conditions. Under this condition, apo-pyoverdine modulated the expression of around 2,000 genes. Notably, apo-pyoverdine positively regulated the expression of genes related to development and iron acquisition/redistribution while it repressed the expression of defense-related genes. Accordingly, the growth-promoting effect of apo-pyoverdine in plants grown under iron-deficient conditions was impaired in iron-regulated transporter1 and ferric chelate reductase2 knockout mutants and was prioritized over immunity, as highlighted by an increased susceptibility to Botrytis cinerea This process was accompanied by an overexpression of the transcription factor HBI1, a key node for the cross talk between growth and immunity. This study reveals an unprecedented mode of action of pyoverdine in Arabidopsis and demonstrates that its incidence on physiological traits depends on the plant iron status.
© 2016 American Society of Plant Biologists. All Rights Reserved.

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Year:  2016        PMID: 26956666      PMCID: PMC4854674          DOI: 10.1104/pp.15.01537

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  58 in total

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Journal:  New Phytol       Date:  2013-09-10       Impact factor: 10.151

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6.  The bHLH transcription factor HBI1 mediates the trade-off between growth and pathogen-associated molecular pattern-triggered immunity in Arabidopsis.

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Authors:  Christos Zamioudis; Jolanda Korteland; Johan A Van Pelt; Muriël van Hamersveld; Nina Dombrowski; Yang Bai; Johannes Hanson; Marcel C Van Verk; Hong-Qing Ling; Paul Schulze-Lefert; Corné M J Pieterse
Journal:  Plant J       Date:  2015-10       Impact factor: 6.417

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  26 in total

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Review 2.  Exploring the efficacy of antagonistic rhizobacteria as native biocontrol agents against tomato plant diseases.

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Journal:  3 Biotech       Date:  2020-06-27       Impact factor: 2.406

Review 3.  Delineation of mechanistic approaches of rhizosphere microorganisms facilitated plant health and resilience under challenging conditions.

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5.  Classification of the plant-associated lifestyle of Pseudomonas strains using genome properties and machine learning.

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Review 6.  Plant Beneficial Bacteria as Bioprotectants against Wheat and Barley Diseases.

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7.  Bacterial effector targeting of a plant iron sensor facilitates iron acquisition and pathogen colonization.

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Review 8.  Pseudomonas putida and its close relatives: mixing and mastering the perfect tune for plants.

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9.  The Arabidopsis defensin gene, AtPDF1.1, mediates defence against Pectobacterium carotovorum subsp. carotovorum via an iron-withholding defence system.

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10.  Sulfur Deprivation Modulates Salicylic Acid Responses via Nonexpressor of Pathogenesis-Related Gene 1 in Arabidopsis thaliana.

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