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January 23, 2026Pest Management Science0 citationsOpen Access

First genome sequence of a European Alternaria brassicae isolate and genes involved in early development of alternaria leaf spot on Brassica juncea

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KKKevin M. KingGMG. McLaughlinUniversity of HertfordshireCDChinthani S. Karandeni DewageUniversity of Hertfordshire

Key Points

  • The aim is to explore the genome and host interactions of a European isolate of Alternaria brassicae affecting Brassica juncea.
  • Genome sequencing using PacBio and Illumina technologies on the UK isolate AA1/5.
  • Comparative analysis with an Indian isolate to identify genomic differences.
  • Dual RNA-sequencing profiling of AA1/5 and two Brassica juncea cultivars.
  • Quantitative reverse transcriptase-PCR for validating gene expression in host plants.
  • The UK isolate has a 32.6 Mb genome with 7228 predicted genes, showing divergence from Indian isolates.
  • Differential expression of fungal genes involved in carbohydrate metabolism and cell wall degradation was identified.
  • Host response included the induction of oxidative pentose phosphate pathway genes and up-regulation of defence-related genes PR-4 and PR-5.

Abstract

Abstract BACKGROUND Alternaria brassicae is a necrotrophic fungal pathogen causing grey leaf spot disease in Brassicaceae crops, notably Brassica juncea . While previous genomic studies have focused on Indian isolates, the molecular basis of host–pathogen interactions in European isolates remains unexplored. RESULTS We report the first genome sequence of a UK A. brassicae isolate (AA1/5), assembled using PacBio and Illumina platforms, revealing a 32.6 Mb genome with 7228 predicted genes. Comparative analysis with the Indian J3 isolate suggests genomic divergence, including fewer repetitive elements and secreted proteins in AA1/5. Dual RNA‐sequencing profiling of AA1/5 and two B. juncea cultivars (Sej‐2 (2) and Pusa Jaikisan) identified differential expression of fungal genes involved in carbohydrate metabolism, cell wall degradation, and endocytosis. Host transcriptomics revealed suppression of photosystem genes and induction of oxidative pentose phosphate pathway genes. Cultivar‐specific responses included differential regulation of defence‐related genes such as PR‐3 , RLP35 , JOX4 , and CYP81F3 . Quantitative reverse transcriptase‐PCR validated the host transcriptomic dataset with up‐regulation after fungal infection in both cultivars of two pathogenesis‐related genes, PR‐4 and PR‐5 . CONCLUSION This study provides novel insights into the genomic and transcriptomic landscape of a European A. brassicae isolate and its interaction with B. juncea . The findings highlight conserved and divergent pathogenicity mechanisms and host responses, offering a foundation for future resistance breeding and functional studies in Brassicaceae crops. © 2026 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

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Cite This Study

King et al. (2026) studied this question.

synapsesocial.com/papers/69730f18c8125b09b0d1ed6ahttps://doi.org/10.1002/ps.70477
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