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Abstract / Description of output
Parasites have evolved proteins, virulence factors (VFs), that facilitate plant colonisation, however VFs mediating parasitic plant–host interactions are poorly understood. Striga hermonthica is an obligate, root-parasitic plant of cereal hosts in sub-Saharan Africa, causing devastating yield losses. Understanding the molecular nature and allelic variation of VFs in S. hermonthica is essential for breeding resistance and delaying the evolution of parasite virulence. We assembled the S. hermonthica genome and identified secreted proteins using in silico prediction. Pooled sequencing of parasites growing on a susceptible and a strongly resistant rice host allowed us to scan for loci where selection imposed by the resistant host had elevated the frequency of alleles contributing to successful colonisation. Thirty-eight putatively secreted VFs had very different allele frequencies with functions including host cell wall modification, protease or protease inhibitor and kinase activities. These candidate loci had significantly higher Tajima's D than the genomic background, consistent with balancing selection. Our results reveal diverse strategies used by S. hermonthica to overcome different layers of host resistance. Understanding the maintenance of variation at virulence loci by balancing selection will be critical to managing the evolution of virulence as part of a sustainable control strategy.
Original language | English |
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Pages (from-to) | 622-638 |
Number of pages | 17 |
Journal | New Phytologist |
Volume | 236 |
Issue number | 2 |
Early online date | 14 Jun 2022 |
DOIs | |
Publication status | Published - 1 Oct 2022 |
Keywords / Materials (for Non-textual outputs)
- parasitic plants
- population genomics
- secretome
- Striga genome
- Striga hermonthica
- virulence factors (VFs)
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Dive into the research topics of 'Genome-enabled discovery of candidate virulence loci in Striga hermonthica, a devastating parasite of African cereal crops'. Together they form a unique fingerprint.Projects
- 1 Finished
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Genomic approaches to understanding resistance and virulence in the cereal-Striga interaction for targeted breeding of durable defence
Blaxter, M.
1/09/12 → 31/08/16
Project: Research