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The quasi-universality of nestedness in the structure of quantitative plant-parasite interactions

Moury Benoît, Audergon Jean-Marc, Baudracco-Arnas Sylvie, Ben Krima Safa, Bertrand François, Boissot Nathalie, Buisson Mireille, Caffier Valérie, Cantet Mélissa, Chanéac Sylvia, Constant Carole, Delmotte François, Dogimont Catherine, Doumayrou Juliette, Fabre Frédéric, Fournet Sylvain, Grimault Valérie, Jaunet Thierry, Justafré Isabelle, Lefebvre Véronique, Losdat Denis, C. Marcel Thierry, Montarry Josselin, E. Morris Cindy, Omrani Mariem, Paineau Manon, Perrot Sophie, Pilet-Nayel Marie-Laure, Ruellan Youna
doi: https://doi.org/10.1101/2021.03.03.433745
Moury Benoît
1Pathologie Végétale, INRAE, 84140 Montfavet, France
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  • For correspondence: benoit.moury@inrae.fr
Audergon Jean-Marc
2GAFL, INRAE, 84140, Montfavet, France
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Baudracco-Arnas Sylvie
3Laboratoires ASL, 755 chemin de Meinajaries, 84140 Montfavet, France
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Ben Krima Safa
4University of Paris-Saclay, INRAE, AgroParisTech, UMR BIOGER, 78850 Thiverval-Grignon, France
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Bertrand François
5Bayer Seeds SAS, Chemin de Roquemartine Mas Lamy, 13670, Saint-Andiol, France
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Boissot Nathalie
2GAFL, INRAE, 84140, Montfavet, France
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Buisson Mireille
6GAUTIER SEMENCES, Route d’Avignon, 13630 Eyragues, France
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Caffier Valérie
7Univ Angers, Institut Agro, INRAE, IRHS, SFR QUASAV, 49000 Angers, France
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Cantet Mélissa
2GAFL, INRAE, 84140, Montfavet, France
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Chanéac Sylvia
8TAKII FRANCE SAS, 660 Chemin de la Crau, 13630 EYRAGUES, France
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Constant Carole
9Sakata Vegetables Europe, Domaine de Sablas, rue du moulin, 30620 Uchaud, France
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Delmotte François
10SAVE, INRAE, Bordeaux Sciences Agro, ISVV, 33140 Villenave d’Ornon, France
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Dogimont Catherine
2GAFL, INRAE, 84140, Montfavet, France
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Doumayrou Juliette
1Pathologie Végétale, INRAE, 84140 Montfavet, France
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Fabre Frédéric
10SAVE, INRAE, Bordeaux Sciences Agro, ISVV, 33140 Villenave d’Ornon, France
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Fournet Sylvain
11IGEPP, INRAE, Institut Agro, Univ. Rennes, 35653 Le Rheu, France
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Grimault Valérie
12GEVES, 25 rue Georges Morel, CS 900024, 49071 Beaucouzé, France
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Jaunet Thierry
13HM.Clause, 1 chemin du Moulin des Ronzières, 49800 La Bohalle, France
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Justafré Isabelle
14Vilmorin & Cie, Mas Pazac, 30210 Ledenon, France
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Lefebvre Véronique
2GAFL, INRAE, 84140, Montfavet, France
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Losdat Denis
15RIJK ZWAAN France, La Vernède, 30390 Aramon, France
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C. Marcel Thierry
4University of Paris-Saclay, INRAE, AgroParisTech, UMR BIOGER, 78850 Thiverval-Grignon, France
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Montarry Josselin
11IGEPP, INRAE, Institut Agro, Univ. Rennes, 35653 Le Rheu, France
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E. Morris Cindy
1Pathologie Végétale, INRAE, 84140 Montfavet, France
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Omrani Mariem
1Pathologie Végétale, INRAE, 84140 Montfavet, France
2GAFL, INRAE, 84140, Montfavet, France
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Paineau Manon
10SAVE, INRAE, Bordeaux Sciences Agro, ISVV, 33140 Villenave d’Ornon, France
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Perrot Sophie
12GEVES, 25 rue Georges Morel, CS 900024, 49071 Beaucouzé, France
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Pilet-Nayel Marie-Laure
11IGEPP, INRAE, Institut Agro, Univ. Rennes, 35653 Le Rheu, France
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Ruellan Youna
2GAFL, INRAE, 84140, Montfavet, France
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Abstract

Understanding the relationships between host range and pathogenicity for parasites, and between the efficiency and scope of immunity for hosts are essential to implement efficient disease control strategies. In the case of plant parasites, most studies have focused on describing qualitative interactions and a variety of genetic and evolutionary models has been proposed in this context. Although plant quantitative resistance benefits from advantages in terms of durability, we presently lack models that account for quantitative interactions between plants and their parasites and the evolution of these interactions. Nestedness and modularity are important features to unravel the overall structure of host-parasite interaction matrices. Here, we analysed these two features on 32 matrices of quantitative pathogenicity trait data gathered from 15 plant-parasite pathosystems consisting of either annual or perennial plants along with fungi or oomycetes, bacteria, nematodes, insects and viruses. The performance of several nestedness and modularity algorithms was evaluated through a simulation approach, which helped interpretation of the results. We observed significant modularity in only six of the 32 matrices, with two or three modules detected. For three of these matrices, modules could be related to resistance quantitative trait loci present in the host. In contrast, we found high and significant nestedness in 30 of the 32 matrices. Nestedness was linked to other properties of plant-parasite interactions. First, pathogenicity trait values were explained in majority by a parasite strain effect and a plant accession effect, with no or minor parasite-plant interaction term. Second, correlations between the efficiency and scope of the resistance of plant genotypes, and between the host range breadth and pathogenicity level of parasite strains were overall positive. This latter result questions the efficiency of strategies based on the deployment of several genetically-differentiated cultivars of a given crop species in the case of quantitative plant immunity.

Competing Interest Statement

The authors of this manuscript declare that they have no financial conflict of interest with the content of this article. Benoit Moury in one of the Peer Community In Evolutionary Biology recommenders.

Footnotes

  • Cite as: Moury B, Audergon J-M, Baudracco-Arnas S, Ben Krima S, Bertrand F, Boissot N, Buisson M, Caffier V, Cantet M, Chanéac S, Constant C, Delmotte F, Dogimont C, Doumayrou J, Fabre F, Fournet S, Grimault V, Jaunet T, Justafré I, Lefebvre V, Losdat D, Marcel TC, Montarry J, Morris CE, Omrani M, Paineau M, Perrot S, Pilet-Nayel M-L, Ruellan Y (2021) The quasi-universality of nestedness in the structure of quantitative plant-parasite interactions. bioRxiv, 2021.03.03.433745, ver. 4 recommended and peer-reviewed by PCI Evolutionary Biology. https://doi.org/10.1101/2021.03.03.433745

  • Version 4 of this preprint has been peer-reviewed and recommended by Peer Community In Evolutionary Biology (https://doi.org/10.24072/pci.evolbiol.100132).

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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The quasi-universality of nestedness in the structure of quantitative plant-parasite interactions
Moury Benoît, Audergon Jean-Marc, Baudracco-Arnas Sylvie, Ben Krima Safa, Bertrand François, Boissot Nathalie, Buisson Mireille, Caffier Valérie, Cantet Mélissa, Chanéac Sylvia, Constant Carole, Delmotte François, Dogimont Catherine, Doumayrou Juliette, Fabre Frédéric, Fournet Sylvain, Grimault Valérie, Jaunet Thierry, Justafré Isabelle, Lefebvre Véronique, Losdat Denis, C. Marcel Thierry, Montarry Josselin, E. Morris Cindy, Omrani Mariem, Paineau Manon, Perrot Sophie, Pilet-Nayel Marie-Laure, Ruellan Youna
bioRxiv 2021.03.03.433745; doi: https://doi.org/10.1101/2021.03.03.433745
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The quasi-universality of nestedness in the structure of quantitative plant-parasite interactions
Moury Benoît, Audergon Jean-Marc, Baudracco-Arnas Sylvie, Ben Krima Safa, Bertrand François, Boissot Nathalie, Buisson Mireille, Caffier Valérie, Cantet Mélissa, Chanéac Sylvia, Constant Carole, Delmotte François, Dogimont Catherine, Doumayrou Juliette, Fabre Frédéric, Fournet Sylvain, Grimault Valérie, Jaunet Thierry, Justafré Isabelle, Lefebvre Véronique, Losdat Denis, C. Marcel Thierry, Montarry Josselin, E. Morris Cindy, Omrani Mariem, Paineau Manon, Perrot Sophie, Pilet-Nayel Marie-Laure, Ruellan Youna
bioRxiv 2021.03.03.433745; doi: https://doi.org/10.1101/2021.03.03.433745

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