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Virulence of banana wilt-causing fungal pathogen Fusarium oxysporum tropical race 4 is mediated by nitric oxide biosynthesis and accessory genes

  • Yong Zhang,
  • Siwen Liu,
  • Diane Mostert,
  • Houlin Yu,
  • Mengxia Zhuo,
  • Gengtan Li,
  • Cunwu Zuo,
  • Sajeet Haridas,
  • Katie Webster,
  • Minhui Li,
  • Igor V. Grigoriev,
  • Ganjun Yi,
  • Altus Viljoen,
  • Chunyu Li,
  • Li-Jun Ma

摘要

Fusarium wilt of banana, caused by Fusarium oxysporum f. sp. cubense (Foc), is one of the most damaging plant diseases known. Foc race 1 (R1) decimated the Gros Michel-based banana (Musa acuminata) trade, and now Foc tropical race 4 (TR4) threatens global production of its replacement, the Cavendish banana. Here population genomics revealed that all Cavendish banana-infecting Foc race 4 strains share an evolutionary origin distinct from that of R1 strains. TR4 contains accessory genes at the ends of some core chromosomes that are enriched for virulence and mitochondria-related functions. Meta-transcriptomics revealed the unique induction of the entire mitochondrion-localized nitric oxide (NO) biosynthesis pathway upon TR4 infection. Empirically, we confirmed the unique induction of a NO burst in TR4, suggesting that nitrosative pressure may contribute to virulence. Targeted mutagenesis demonstrated the functional importance of fungal NO production and the accessory gene SIX4 as virulence factors.