AI Article Synopsis

  • Globodera rostochiensis is a significant potato pathogen that interacts with host plant roots, with commercial varieties relying on specific resistance genes (R genes) from wild relatives and Andean native potatoes.
  • Research on South American Solanum phureja accessions shows that resistant genotypes trigger an active stress response, including gene activation, tissue regeneration, and hypersensitive responses when attacked by G. rostochiensis.
  • The study highlights the importance of analyzing gene expression changes in S. phureja to understand resistance mechanisms and suggests that de novo transcriptome assembly can identify new resistance traits.

Article Abstract

Background: Globodera rostochiensis belongs to major potato pathogens with a sophisticated mechanism of interaction with roots of the host plants. Resistance of commercial varieties is commonly based on specific R genes introgressed from natural populations of related wild species and from native potato varieties grown in the Andean highlands. Investigation of molecular resistance mechanisms and screening the natural populations for novel R genes are important for both fundamental knowledge on plant pathogen interactions and breeding for durable resistance. Here we exploited the Solanum phureja accessions collected in South America with contrasting resistance to G. rostochiensis.

Results: The infestation of S. phureja with G. rostochiensis juveniles resulted in wounding stress followed by activation of cell division and tissue regeneration processes. Unlike the susceptible S. phureja genotype, the resistant accession reacted by rapid induction of variety of stress response related genes. This chain of molecular events accompanies the hypersensitive response at the juveniles' invasion sites and provides high-level resistance. Transcriptomic analysis also revealed considerable differences between the analyzed S. phureja genotypes and the reference genome.

Conclusion: The molecular processes in plant roots associated with changes in gene expression patterns in response to G. rostochiensis infestation and establishment of either resistant or susceptible phenotypes are discussed. De novo transcriptome assembling is considered as an important tool for discovery of novel resistance traits in S. phureja accessions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7557027PMC
http://dx.doi.org/10.1186/s12870-020-02334-2DOI Listing

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