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Review
. 2021 Nov 8;376(1837):20200359.
doi: 10.1098/rstb.2020.0359. Epub 2021 Sep 20.

Towards a phylogenetic ecology of plant pests and pathogens

Affiliations

Affiliations

  • 1 Department of Botany, University of British Columbia, Vancouver, British Columbia, Canada.
  • 2 Department of Forest and Conservation Sciences, University of British Columbia, Vancouver, British Columbia, Canada.
  • 3 African Centre for DNA Barcoding, University of Johannesburg, Johannesburg 2092, South Africa.
Review

Towards a phylogenetic ecology of plant pests and pathogens

Andrew V Gougherty et al. Philos Trans R Soc Lond B Biol Sci. .
. 2021 Nov 8;376(1837):20200359.
doi: 10.1098/rstb.2020.0359. Epub 2021 Sep 20.

Affiliations

  • 1 Department of Botany, University of British Columbia, Vancouver, British Columbia, Canada.
  • 2 Department of Forest and Conservation Sciences, University of British Columbia, Vancouver, British Columbia, Canada.
  • 3 African Centre for DNA Barcoding, University of Johannesburg, Johannesburg 2092, South Africa.

Abstract

Plant-pathogens and insect pests, hereafter pests, play an important role in structuring ecological communities, yet both native and introduced pests impose significant pressure on wild and managed systems, and pose a threat to food security. Global changes in climate and land use, and transportation of plants and pests around the globe are likely to further increase the range, frequency and severity of pest outbreaks in the future. Thus, there is a critical need to expand on current ecological theory to address these challenges. Here, we outline a phylogenetic framework for the study of plant and pest interactions. In plants, a growing body of work has suggested that evolutionary relatedness, phylogeny, strongly structures plant-pest associations-from pest host breadths and impacts, to their establishment and spread in new regions. Understanding the phylogenetic dimensions of plant-pest associations will help to inform models of invasive species spread, disease and pest risk in crops, and emerging pest outbreaks in native plant communities-which will have important implications for protecting food security and biodiversity into the future. This article is part of the theme issue 'Infectious disease macroecology: parasite diversity and dynamics across the globe'.

Keywords: amplification/dilution effect; enemy release; host breadth; invasive species; pest emergence; phylogenetic conservatism.

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Figures

Figure 1.

Figure 1.

Phylogenetic constraints on the emergence…

Figure 1.

Phylogenetic constraints on the emergence and spread of plant pests introduced to a…

Figure 1.
Phylogenetic constraints on the emergence and spread of plant pests introduced to a new region on a non-native plant. Solid red spots indicate pest occurrence on hosts; solid blue arrows indicate transmission between hosts with arrow size proportional to the level of transmissibility; hatched arrows indicate lack of transmission. Leaf images are courtesy of the T. Saxby, Integration and Application Network, University of Maryland Center for Environmental Science (ian.umces.edu/symbols/). (Online version in colour.)
Figure 2.

Figure 2.

Associations (black squares) between 62

Figure 2.

Associations (black squares) between 62 Phytophthora species (rows) and 461 plant host species…

Figure 2.
Associations (black squares) between 62 Phytophthora species (rows) and 461 plant host species (columns), with their respective phylogenies in the margins—see the electronic supplementary material, Methods. Phytophthora species show wide variety in their host breadths, where some are known on just a single host, others are phylogenetic specialists (e.g. Phytophthora infestans, orange symbols), and others have hosts widely dispersed across the host phylogeny (e.g. Phytophthora nicotianae, blue symbols). The distribution of hosts across the pest phylogeny is equally mixed, with some hosts infested by just a single Phytophthora species, while others appear to be susceptible to multiple Phytophthora species. Phytophthora phylogeny is from Yang et al. [40] pruned to include one isolate per species. The plant phylogeny was generated with V.PhyloMaker [38], and pest-host associations are from the CABI Crop Protection Compendium [42]. (Online version in colour.)
Figure 3.

Figure 3.

Relationship between the number of…

Figure 3.

Relationship between the number of plant tissues affected by plant pests and the…

Figure 3.
Relationship between the number of plant tissues affected by plant pests and the phylogenetic diversity of their hosts. Plant tissues (i.e. roots, stems, leaves, growing point, inflorescence, fruits, seeds) only include those that are directly impacted by the pest, via production of lesions, mycelium/spores, necrosis, galls or direct feeding on the tissue. Black symbols represent all included plant pests (n = 922). Red symbols highlight Phytophthora species (with available tissue data, n = 19) shown in the phylogeny in figure 2. Lines show fit of a quadratic regression for all pests (less steep blue line) and Phytophthora species (steeper red line)—see the electronic supplementary material, Methods. Both regression lines show a positive relationship between phylogenetic diversity and the number of tissues affected, but we note the pests that affect the largest number of plant tissues—across all pests and just Phytophthora—have intermediate levels of host phylogenetic diversity. (Online version in colour.)
Figure 4.

Figure 4.

Severity of native and non-native…

Figure 4.

Severity of native and non-native pests on native North American tree species, in…

Figure 4.
Severity of native and non-native pests on native North American tree species, in relation to the phylogenetic distance from the most severely affected host. Lines show best fit regressions modelled as severity ∼b0 + b1 × log10 (cophenetic distance + 1), for each combination of pest type (pathogen and insect) and nativity (native and invasive)—see the electronic supplementary material, Methods. Note the impacts of invasive pests tend to be higher and decay more rapidly with cophenetic distance than native pests. The gap between approximately 275–650 reflects the large phylogenetic distance that separates angiosperms and gymnosperms. Severity ratings are from Potter et al. [50]. See table 1 for model coefficients. (Online version in colour.)

References

    1. Kinealy C. 2006This great calamity: the great Irish famine: the Irish famine 1845–52. Dublin, Ireland: Gill & Macmillan Ltd.
    1. Fry W. 2008Phytophthora infestans: the plant (and R gene) destroyer. Mol. Plant Pathol. 9, 385-402. ( 10.1111/j.1364-3703.2007.00465.x) - DOI - PMC - PubMed
    1. Goodwin SB, Cohen BA, Fry WE. 1994Panglobal distribution of a single clonal lineage of the Irish potato famine fungus. Proc. Natl Acad. Sci. USA 91, 11 591-11 595. ( 10.1073/pnas.91.24.11591) - DOI - PMC - PubMed
    1. Forneck A, Huber L. 2009(A)sexual reproduction – a review of life cycles of grape phylloxera, Daktulosphaira vitifoliae. Entomol. Exp. Appl. 131, 1-10. ( 10.1111/j.1570-7458.2008.00811.x) - DOI
    1. Granett J, Walker MA, Kocsis L, Omer AD. 2001Biology and management of grape phylloxera. Annu. Rev. Entomol. 46, 387-412. ( 10.1146/annurev.ento.46.1.387) - DOI - PubMed

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