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An ethoxylated surfactant enhances the penetration of the sulfated laminarin through leaf cuticle and stomata,leading to increased induced resistance against grapevine downy mildew
Authors:Franck Paris  Yuko Krzyżaniak  Christian Gauvrit  Frank Jamois  Frédéric Domergue  Jérôme Joubès  Vincent Ferrières  Marielle Adrian  Laurent Legentil  Xavier Daire  Sophie Trouvelot
Institution:1. Ecole Nationale Supérieure de Chimie de Rennes, CNRS, UMR 6226, Rennes, France;2. Université européenne de Bretagne, Rennes, France;3. INRA, UMR 1347 Agroécologie, ERL CNRS 6300, Dijon, France;4. Laboratoires Go?mar, S.A.S.‐Parc technopolitain Atalante, Saint‐Malo, France;5. Université de Bordeaux, Laboratoire de Biogenèse Membranaire, UMR 5200, Bordeaux, France;6. CNRS, UMR 5200, Laboratoire de Biogenèse Membranaire, Bordeaux, France;7. Université de Bourgogne, UMR 1347 Agroécologie, ERL CNRS 6300, Dijon, France
Abstract:Some β‐1,3‐glucans and particularly sulfated laminarin (PS3) are known as resistance inducers (RIs) in grapevine against the downy mildew. However, their efficacy in vineyard is still often too low, which might be caused by a limited penetration through the leaf cuticle following spray application. We used 14C‐sucrose uptake experiments with grapevine leaves in order to select a surfactant as saccharide penetration enhancer. Our results showed that although sucrose foliar uptake was low, it was strongly enhanced by Dehscofix CO125 (DE), a highly ethoxylated surfactant. Fluorescent saccharides were then produced and laser scanning microscopy was used to analyze their foliar diffusion pattern in Arabidopsis thaliana and grapevine. Interestingly, sucrose and PS3 were seemingly able to penetrate the leaf cuticle only when formulated with DE. Diffusion could preferentially occur via stomata, anticlinal cell walls and trichomes. In grapevine, PS3 penetration rate was much higher on the stomateous abaxial surface of the leaf than on the adaxial surface. Finally, using DE allowed a higher level of downy mildew control by PS3, which corroborated diffusion observations. Our results have practical consequences for the improvement of treatments with saccharidic inducers on grape. That is, formulation of such RIs plays a critical role for their cuticular diffusion and consequently their efficacy. Also, spray application should preferentially target the abaxial surface of the leaves in order to maximize their penetration.
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