Literature DB >> 31577162

Does the Latent Period of Leaf Fungal Pathogens Reflect Their Trophic Type? A Meta-Analysis of Biotrophs, Hemibiotrophs, and Necrotrophs.

Pierre-Antoine Précigout1,2, David Claessen1, David Makowski3, Corinne Robert2.   

Abstract

We performed a meta-analysis to search for a relation between the trophic type and latent period of fungal pathogens. The pathogen incubation period and the level of resistance of the hosts were also investigated. This ecological knowledge would help us to more efficiently regulate crop epidemics for different types of pathogens. We gathered latent period data from 103 studies dealing with 51 fungal pathogens of the three major trophic types (25 biotrophs, 15 hemibiotrophs, and 11 necrotrophs), representing 2,542 mean latent periods. We show that these three trophic types display significantly different latent periods. Necrotrophs exhibited the shortest latent periods (<100 degree-days [DD]), biotrophs had intermediate ones (between 100 and 200 DD), and hemibiotrophs had the longest latent periods (>200 DD). We argue that this relation between trophic type and latent period points to two opposing host exploitation strategies: necrotrophs mount a rapid destructive attack on the host tissue, whereas biotrophs and hemibiotrophs avoid or delay the damaging phase. We query the definition of hemibiotrophic pathogens and discuss whether the length of the latent period is determined by the physiological limits inherent to each trophic type or by the adaptation of pathogens of different trophic types to the contrasting conditions experienced in their interaction with the host.

Keywords:  fungal pathogens; host resistance; incubation period; latent period; leaf crop pathogens; meta-analysis; pathogen trophic type

Mesh:

Year:  2020        PMID: 31577162     DOI: 10.1094/PHYTO-04-19-0144-R

Source DB:  PubMed          Journal:  Phytopathology        ISSN: 0031-949X            Impact factor:   4.025


  8 in total

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6.  Seasonal shifts from plant diversity to consumer control of grassland productivity.

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7.  Pathogen Adaptation to American (Rpv3-1) and Eurasian (Rpv29) Grapevine Loci Conferring Resistance to Downy Mildew.

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8.  Predicting Lifestyle from Positive Selection Data and Genome Properties in Oomycetes.

Authors:  Daniel Gómez-Pérez; Eric Kemen
Journal:  Pathogens       Date:  2021-06-25
  8 in total

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