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Work package 4
Predicting risk via analysis of Phytophthora
genome evolution
Paul Sharp, Leighton Pritchard, David Cooke, Sarah Green
11/18/162
Phytophthora genome evolution
- Understanding UK Phytophthora diversity
- Understanding origins of emerging Phytophthoras
- Understanding genome evolution in Phytophthora
Adaptation to new hosts? Adaptation to woody hosts?
Hybridization? Horizontal gene transfer?
11/18/163
Proposed approach (P. Sharp)
1. Look at the Phytophthora phylogeny
2. Classify species according to pathogenicity, woody-or-not host (and any other
interesting phenotype?)
3. Categorise those species with, and those without genome data
4. Then identify three species that can be contrasted with existing genomes
Not easy because so many unknowns, particularly for newly described species
Which Phytophthoras to target sequence ?
11/18/164
Clade 1 (P. andina, P. infestans, P. parasitica, P. cactorum)
Clade 2 (P. capsici, P. plurivora, P. multivora)
Clade 3 (P. pluvialis, P. taxon totara)
Clade 4 (P. palmivora)
Clade 5 (P. agathidicida)
Clade 6 (P. pinifolia)
Clade 7 (P. alni, P. sojae, P. pisi, P. rubi, P. fragariae,
P. cambivora, P. cinnamomi)
Clade 8 (P. ramorum, P. lateralis, P. cryptogea, P. syringae, P.
austrocedri)
Clade 9 0
Clade 10 (P. kernoviae)
Phytophthora genomes by clade
11/18/165
Infect woody parts of trees;
P. cactorum, P. plurivora, P. multivora,
P. agathidicida, P. alni, P. cambivora,
P. cinnamomi, P. ramorum, P. lateralis,
P. austrocedri, P. kernoviae
Infect foliage of trees;
P. pluvialis, P. taxon totara, P. palmivora,
P. pinifolia, P. syringae
Infect herbaceous (non-woody) plants;
P. andina, P. infestans, P. parasitica,
P. capsici, P. sojae, P. pisi, P. rubi,
P. fragariae, P. cryptogea
Phytophthora genomes by infection phenotype
11/18/166
Narrow vs broad host range ?
ie P. infestans vs P. cinnamomi
Aerial vs root infecting ?
ie P. ramorum vs P. austrocedri
Strong vs weak pathogens ?
ie all current genomes vs ?
Phytophthora genomes by other phenotype ?
 So look for weak pathogen (as regarded to date) to contrast
with already sequenced, economically important pathogens of woody hosts
11/18/167
Clade 7 has for example P. alni, P. cinnamomi and P. cambivora already sequenced
P. europaea as a contrast ?
Proposed genomes to target sequence
11/18/168
Clade 8c has P. ramorum and P. lateralis already sequenced
P. foliorum as a contrast ?
Proposed genomes to target sequence
11/18/169
Clade 2 has P. multivora and P. plurivora already sequenced
P. multivesiculata as a contrast ?
Proposed genomes to target sequence
11/18/1610
OR novel clade 8d has P. austrocedri and P. syringae (genomes in progress)
P. obscura as a contrast ? (very closely related to P. austrocedri)
Proposed genomes to target sequence

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WP4: Predicting risk via analysis of Phytophthora genome evolution

  • 1. Work package 4 Predicting risk via analysis of Phytophthora genome evolution Paul Sharp, Leighton Pritchard, David Cooke, Sarah Green
  • 2. 11/18/162 Phytophthora genome evolution - Understanding UK Phytophthora diversity - Understanding origins of emerging Phytophthoras - Understanding genome evolution in Phytophthora Adaptation to new hosts? Adaptation to woody hosts? Hybridization? Horizontal gene transfer?
  • 3. 11/18/163 Proposed approach (P. Sharp) 1. Look at the Phytophthora phylogeny 2. Classify species according to pathogenicity, woody-or-not host (and any other interesting phenotype?) 3. Categorise those species with, and those without genome data 4. Then identify three species that can be contrasted with existing genomes Not easy because so many unknowns, particularly for newly described species Which Phytophthoras to target sequence ?
  • 4. 11/18/164 Clade 1 (P. andina, P. infestans, P. parasitica, P. cactorum) Clade 2 (P. capsici, P. plurivora, P. multivora) Clade 3 (P. pluvialis, P. taxon totara) Clade 4 (P. palmivora) Clade 5 (P. agathidicida) Clade 6 (P. pinifolia) Clade 7 (P. alni, P. sojae, P. pisi, P. rubi, P. fragariae, P. cambivora, P. cinnamomi) Clade 8 (P. ramorum, P. lateralis, P. cryptogea, P. syringae, P. austrocedri) Clade 9 0 Clade 10 (P. kernoviae) Phytophthora genomes by clade
  • 5. 11/18/165 Infect woody parts of trees; P. cactorum, P. plurivora, P. multivora, P. agathidicida, P. alni, P. cambivora, P. cinnamomi, P. ramorum, P. lateralis, P. austrocedri, P. kernoviae Infect foliage of trees; P. pluvialis, P. taxon totara, P. palmivora, P. pinifolia, P. syringae Infect herbaceous (non-woody) plants; P. andina, P. infestans, P. parasitica, P. capsici, P. sojae, P. pisi, P. rubi, P. fragariae, P. cryptogea Phytophthora genomes by infection phenotype
  • 6. 11/18/166 Narrow vs broad host range ? ie P. infestans vs P. cinnamomi Aerial vs root infecting ? ie P. ramorum vs P. austrocedri Strong vs weak pathogens ? ie all current genomes vs ? Phytophthora genomes by other phenotype ?  So look for weak pathogen (as regarded to date) to contrast with already sequenced, economically important pathogens of woody hosts
  • 7. 11/18/167 Clade 7 has for example P. alni, P. cinnamomi and P. cambivora already sequenced P. europaea as a contrast ? Proposed genomes to target sequence
  • 8. 11/18/168 Clade 8c has P. ramorum and P. lateralis already sequenced P. foliorum as a contrast ? Proposed genomes to target sequence
  • 9. 11/18/169 Clade 2 has P. multivora and P. plurivora already sequenced P. multivesiculata as a contrast ? Proposed genomes to target sequence
  • 10. 11/18/1610 OR novel clade 8d has P. austrocedri and P. syringae (genomes in progress) P. obscura as a contrast ? (very closely related to P. austrocedri) Proposed genomes to target sequence