4.7 Article

Seed Transmission of Pathogens: Non-Canonical Immune Response in Arabidopsis Germinating Seeds Compared to Early Seedlings against the Necrotrophic Fungus Alternaria brassicicola

期刊

PLANTS-BASEL
卷 11, 期 13, 页码 -

出版社

MDPI
DOI: 10.3390/plants11131708

关键词

Arabidopsis; Alternaria brassicicola; seed-borne pathogen transmission; susceptible response

资金

  1. French Region Pays de la Loire
  2. Angers Loire Metropole
  3. European Regional Development Fund

向作者/读者索取更多资源

The transmission of seed-borne pathogens during seed germination is a major cause of crop diseases. However, the immune responses of germinating seeds to biotic invaders are poorly understood. This study used the Arabidopsis thaliana/Alternaria brassicicola patho-system to investigate the transcriptional responses of germinating seeds and young seedlings to infection by the necrotrophic fungus. The results revealed non-canonical immune responses in early germinating seeds compared to early seedling establishment stages.
The transmission of seed-borne pathogens by the germinating seed is responsible for major crop diseases. The immune responses of the seed facing biotic invaders are poorly documented so far. The Arabidopsis thaliana/Alternaria brassicicola patho-system was used to describe at the transcription level the responses of germinating seeds and young seedling stages to infection by the necrotrophic fungus. RNA-seq analyses of healthy versus inoculated seeds at 3 days after sowing (DAS), stage of radicle emergence, and at 6 and 10 DAS, two stages of seedling establishment, identified thousands of differentially expressed genes by Alternaria infection. Response to hypoxia, ethylene and indole pathways were found to be induced by Alternaria in the germinating seeds. However, surprisingly, the defense responses, namely the salicylic acid (SA) pathway, the response to reactive oxygen species (ROS), the endoplasmic reticulum-associated protein degradation (ERAD) and programmed cell death, were found to be strongly induced only during the latter post-germination stages. We propose that this non-canonical immune response in early germinating seeds compared to early seedling establishment was potentially due to the seed-to-seedling transition phase. Phenotypic analyses of about 14 mutants altered in the main defense pathways illustrated these specific defense responses. The unexpected germination deficiency and insensitivity to Alternaria in the glucosinolate deficient mutants allow hypothesis of a trade-off between seed germination, necrosis induction and Alternaria transmission to the seedling. The imbalance of the SA and jasmonic acid (JA) pathways to the detriment of the JA also illustrated a non-canonical immune response at the first stages of the seedling.

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