Literature DB >> 34989007

Nitrogen nutrition modifies the susceptibility of Arabidopsis thaliana to the necrotrophic fungus, Alternaria brassicicola.

Thibault Barrit1, Alexis Porcher1, Caroline Cukier1, Pascale Satour1, Thomas Guillemette1, Anis M Limami1, Béatrice Teulat1, Claire Campion1, Elisabeth Planchet1.   

Abstract

The impact of the form of nitrogen (N) source (nitrate versus ammonium) on the susceptibility to Alternaria brassicicola, a necrotrophic fungus, has been examined in Arabidopsis thaliana at the rosette stage. Nitrate nutrition was found to increase fungal lesions considerably. There was a similar induction of defence gene expression following infection under both N nutritions, except for the phytoalexin deficient 3 gene, which was overexpressed with nitrate. Nitrate also led to a greater nitric oxide production occurring in planta during the saprophytic growth and lower nitrate reductase (NIA1) expression 7 days after inoculation. This suggests that nitrate reductase-dependent nitric oxide production had a dual role, whereby, despite its known role in the generic response to pathogens, it affected plant metabolism, and this facilitated fungal infection. In ammonium-grown plants, infection with A. brassicicola induced a stronger gene expression of ammonium transporters and significantly reduced the initially high ammonium content in the leaves. There was a significant interaction between N source and inoculation (presence versus absence of the fungus) on the total amino acid content, while N nutrition reconfigured the spectrum of major amino acids. Typically, a higher content of total amino acid, mainly due to a stronger increase in asparagine and glutamine, is observed under ammonium nutrition while, in nitrate-fed plants, glutamate was the only amino acid which content increased significantly after fungal inoculation. N nutrition thus appears to control fungal infection via a complex set of signalling and nutritional events, shedding light on how nitrate availability can modulate disease susceptibility.
© 2022 Scandinavian Plant Physiology Society.

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Year:  2022        PMID: 34989007     DOI: 10.1111/ppl.13621

Source DB:  PubMed          Journal:  Physiol Plant        ISSN: 0031-9317            Impact factor:   4.500


  2 in total

1.  Seed Protection of Solanum lycopersicum with Pythium oligandrum against Alternaria brassicicola and Verticillium albo-atrum.

Authors:  Kateřina Bělonožníková; Veronika Hýsková; Marie Vašková; Tomáš Křížek; Kateřina Čokrtová; Tomáš Vaněk; Lucie Halířová; Michal Chudý; Antoniana Žufić; Helena Ryšlavá
Journal:  Microorganisms       Date:  2022-07-04

2.  Nitrogen metabolic rate and differential ammonia volatilization regulate resistance against opportunistic fungus Alternaria alternata in tobacco.

Authors:  Zhixiao Yang; Yi Chen; Yi Wang; Haiqian Xia; Shaoqing Zheng; Shengdong Xie; Yi Cao; Jiemin Liu; Shafaque Sehar; Yingchao Lin; Yushuang Guo; Imran Haider Shamsi
Journal:  Front Plant Sci       Date:  2022-09-23       Impact factor: 6.627

  2 in total

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