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Which processes shape grapevine moth immune response against parasitism? Plastic or selective response Fanny Vogelweith, Denis Thiéry, Yannick Moret &

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Presentation on theme: "Which processes shape grapevine moth immune response against parasitism? Plastic or selective response Fanny Vogelweith, Denis Thiéry, Yannick Moret &"— Presentation transcript:

1 Which processes shape grapevine moth immune response against parasitism? Plastic or selective response Fanny Vogelweith, Denis Thiéry, Yannick Moret & Jérôme Moreau 15th International Symposium on Insect-Plant Relationships

2 Tritrophic interactions Trophic levels Secondary consummers Natural ennemies Primary produceurs Plants Primary consummers Phytophagous Interdependences Community regulation ≠ rate of parasitism Moreau et al. 2010 – Biological control  Hypotheses?

3 Intimacy of the relationships between pests and natural enemies Plant composition Immune system Natural ennemiesPhytophagous insect Host plant Bukovinsky et al. 2009 Resistance

4 Haemocyte Insect larval Haemolymph Quinones + Cytotoxic compounds Melanin Egg of parasitoid PAMP PRP P PO Antimicrobial peptides Constitutive and induced defenses Insect immune system Tyrosine

5 Genetic Variation of insect immune system Environment Cotter et al. 2004 Nutrition (Siva-Jothy & Thompson 2002 Schmid-Hempel 2003) Density (Barnes & Siva- Jothy 2000)

6 What we already know… Grape variety effect on : Vogelweith et al. 2011. Functional Ecology Moreau et al. 2010. Biological Control Relationship between immunity and parasitism Immune parameters Parasitism Vogelweith et al. 2013. Naturwissenschaften

7 ρ = 0.71 p < 0.0001 -201234 0.0 0.2 0.4 0.6 0.8 1.0 CB TK CC DGF VI OE MER DB PR CBS CBG Parasitism Larval immune system Naïves larvae Relationship between parasitism and immunity

8 Plastic response Larval immune system Parasitism -201234 0.0 0.2 0.4 0.6 0.8 1.0 How to explain this relationship

9 Plastic response Rearing larvae at L4 Immune measures P PO 6 days Presence or Absence Parasitoïd 2 parasitoïd species tested C. capitator & P. nigrina

10 Absence of parasitoïd Plastic response Campoplex capitator Phytomyptera nigrina P PO a a a a a a a aa

11 Plastic response Are the larvae able to detect parasitoids? a a a a a a b b a a b b Dead larvaeAlive larvaeChrysalis 0.0 0.2 0.4 0.6 0.8 1.0 Individual proportion +/- C. I. 95% AbsC.c.P.n. L.c. AbsC.c.P.n. L.c. AbsC.c.P.n. L.c. Vogelweith et al. 2013. Plos One

12 Synthetic value of immune system Parasitism -201234 0.0 0.2 0.4 0.6 0.8 1.0 Conclusion Larvae detect parasitoïds But no effect on immune parameters Plastic response Selective response Plastic response Vogelweith et al. 2013 – Plos One

13 Selective response Average parasitism : recording of 9 populations between 2008 and 2012 Immune parameters measures on naïve larvae in 2012

14 051015202530 Mean rate of parasitism 20 30 40 50 60 70 PO (x10 3 miliunité/min) 6 8 10 12 14 16 Total-PO ( x10 3 miliunité/min) 051015202530 Mean rate of parasitism ρ = 0.62 ; p = 0.07; I.C. 95% = [-0.10; 0.90] ρ = 0.65; p = 0.05 ; I.C. 95% = [-0.03; 0.98] Selective response ρ = 0.72; P = 0.03; I.C. 95% = [0.03; 0.94] PO P

15 Conclusion 1 st year 2 nd year 3 rd year

16 Synthetic value of immune system Parasitism -201234 0.0 0.2 0.4 0.6 0.8 1.0 Conclusion Positive relationship between parasitism & larval immunity Plastic response Selective response

17 Acknowledgments A. Balourdet Ingenieer D. Thiéry Researcher Y. Moret Researcher J.P. Troussard Ingenieer M.-L. Felix Trainee J. Moreau Lecturer E. Desvignes Trainee S. Motreuil Ingenieer

18 Thank you for your attention

19 Conclusion Parasitoïds Grape varieties Larvae - Immunity - In lab and in vineyards Immunity modulation by ≠ selective pressure

20 PO-PPO activities Haemocyte concentration Immune measures Induced defense Antimicrobial activiy Constitutive defenses

21 Haemocyte concentration Grape varieties Haemocyte concentration (x10 3 haemocytes/µL)

22 Antimicrobial activity gwpgpn pgpnrg se cfcsmpgy y mrpny mrpn army cigr gy Grape varieties 0 20 40 60 80 100 Percentage of individual with an antimicrobial activity CBTKCCDGFVIMEROEDBPRCBGCBS a ab b a b ac b abc ALSACEAQUITAINEBOCHAMPAGNEPACA RHONE ALPES 23265322827185769161223312510827133026282215

23 Parasitism Grape varieties

24 Relationship between parasitism and immunity Haemocytes PO-PPO activities Antimicrobial activity P PO P P P P -201234 Synthetic value of immune system

25 Parasitism -201234 0.0 0.2 0.4 0.6 0.8 1.0 Synthetic value of immune system Relationship between parasitism and immunity

26 Involvement of immune system in tritrophic interactions 1 st year 2 nd year

27 Sampling in natural populations May 2011 Vogelweith et al. 2013. Naturwissenschaften


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