In planta Activity of Novel Copper(II)-Based Formulations to Inhibit the Esca-Associated Fungus Phaeoacremonium minimum in Grapevine Propagation Material
Grapevine trunk diseases (GTDs) are a serious and growing threat to vineyards worldwide. The need for innovative control tools persists since pesticides used against some GTDs have been banned and only methods to prevent infections or to reduce foliar symptoms have been developed so far. In this con...
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Frontiers Media S.A.
2021-03-01
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Series: | Frontiers in Plant Science |
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Online Access: | https://www.frontiersin.org/articles/10.3389/fpls.2021.649694/full |
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Article |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Enrico Battiston Enrico Battiston Stéphane Compant Livio Antonielli Vincenzo Mondello Christophe Clément Andrea Simoni Stefano Di Marco Laura Mugnai Florence Fontaine |
spellingShingle |
Enrico Battiston Enrico Battiston Stéphane Compant Livio Antonielli Vincenzo Mondello Christophe Clément Andrea Simoni Stefano Di Marco Laura Mugnai Florence Fontaine In planta Activity of Novel Copper(II)-Based Formulations to Inhibit the Esca-Associated Fungus Phaeoacremonium minimum in Grapevine Propagation Material Frontiers in Plant Science colonization formulation fungicide hydroxyapatite nursery plant defense |
author_facet |
Enrico Battiston Enrico Battiston Stéphane Compant Livio Antonielli Vincenzo Mondello Christophe Clément Andrea Simoni Stefano Di Marco Laura Mugnai Florence Fontaine |
author_sort |
Enrico Battiston |
title |
In planta Activity of Novel Copper(II)-Based Formulations to Inhibit the Esca-Associated Fungus Phaeoacremonium minimum in Grapevine Propagation Material |
title_short |
In planta Activity of Novel Copper(II)-Based Formulations to Inhibit the Esca-Associated Fungus Phaeoacremonium minimum in Grapevine Propagation Material |
title_full |
In planta Activity of Novel Copper(II)-Based Formulations to Inhibit the Esca-Associated Fungus Phaeoacremonium minimum in Grapevine Propagation Material |
title_fullStr |
In planta Activity of Novel Copper(II)-Based Formulations to Inhibit the Esca-Associated Fungus Phaeoacremonium minimum in Grapevine Propagation Material |
title_full_unstemmed |
In planta Activity of Novel Copper(II)-Based Formulations to Inhibit the Esca-Associated Fungus Phaeoacremonium minimum in Grapevine Propagation Material |
title_sort |
in planta activity of novel copper(ii)-based formulations to inhibit the esca-associated fungus phaeoacremonium minimum in grapevine propagation material |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Plant Science |
issn |
1664-462X |
publishDate |
2021-03-01 |
description |
Grapevine trunk diseases (GTDs) are a serious and growing threat to vineyards worldwide. The need for innovative control tools persists since pesticides used against some GTDs have been banned and only methods to prevent infections or to reduce foliar symptoms have been developed so far. In this context, the application of imaging methods, already applied to study plant–microbe interactions, represents an interesting approach to understand the effect of experimental treatments applied to reduce fungal colonization, on GTD-related pathogens activity. To this aim, trials were carried out to evaluate the efficacy of copper-based treatments, formulated with hydroxyapatite (HA) as co-adjuvant with innovative delivery properties, loaded with two different copper(II) compounds (tribasic sulfate and sulfate pentahydrate), and applied to grapevine propagation material to inhibit fungal wood colonization. The treated rootstock (Vitis berlandieri × Vitis riparia cv. K5BB) and scion cuttings (Vitis vinifera L., cv. Chardonnay) had been inoculated with a strain of Phaeoacremonium minimum (Pmi) compared to uninoculated rootstocks. Experimental treatments were applied during the water-soaking process, comparing the copper(II) compounds pure or formulated with HA, to hydrate the cuttings. After callusing, grafted vines were grown under greenhouse conditions in a nursery and inoculated with Pmi::gfp7 or with Pmi wild-type. Fifteen weeks post-inoculation, woody tissues close to the inoculation site were sampled to evaluate the efficiency of the treatments by studying the plant–microbe interaction by confocal laser scanning microscopy (CLSM). Copper and further elements were also quantified in the same tissues immediately after the treatments and on the CLSM samples. Finally, the grapevine defense responses were studied in the leaves of cuttings treated with the same formulations. The present investigation confirmed the relevant interaction of Pmi and the related transformed strain on the vascular tissues of grafted vines. Furthermore, in vitro assay revealed (i) the fungistatic effect of HA and the reduced effect of Cu fungicide when combined with HA. In planta assays showed (ii) the reduction of Pmi infection in propagation material treated with HA-Cu formulations, (iii) the movement of HA-Cu formulations inside the plant tissues and their persistence over time, and (iv) the plant defense reaction following the treatment with pure HA or Cu, or combined. |
topic |
colonization formulation fungicide hydroxyapatite nursery plant defense |
url |
https://www.frontiersin.org/articles/10.3389/fpls.2021.649694/full |
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doaj-1c807ce32a4c4abfa328df2d4d2d02d02021-03-15T06:08:49ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2021-03-011210.3389/fpls.2021.649694649694In planta Activity of Novel Copper(II)-Based Formulations to Inhibit the Esca-Associated Fungus Phaeoacremonium minimum in Grapevine Propagation MaterialEnrico Battiston0Enrico Battiston1Stéphane Compant2Livio Antonielli3Vincenzo Mondello4Christophe Clément5Andrea Simoni6Stefano Di Marco7Laura Mugnai8Florence Fontaine9Dipartimento di Scienze e Tecnologie Agrarie, Alimentari, Ambientali e Forestali – Sezione Patologia Vegetale ed Entomologia, Università degli Studi di Firenze, Firenze, ItalyUniversité de Reims Champagne-Ardenne, Unité Résistance Induite et Bioprotection des Plantes, SFR Condorcet FR CNRS 3417, Reims, FranceBioresources Unit, Center for Health and Bioresources, AIT Austrian Institute of Technology GmbH, Tulln, AustriaBioresources Unit, Center for Health and Bioresources, AIT Austrian Institute of Technology GmbH, Tulln, AustriaUniversité de Reims Champagne-Ardenne, Unité Résistance Induite et Bioprotection des Plantes, SFR Condorcet FR CNRS 3417, Reims, FranceUniversité de Reims Champagne-Ardenne, Unité Résistance Induite et Bioprotection des Plantes, SFR Condorcet FR CNRS 3417, Reims, FranceDipartimento di Scienze e Tecnologie Agroalimentari, Alma Mater Studiorum – Università di Bologna, Bologna, ItalyIstituto per la Bioeconomia, Consiglio Nazionale delle Ricerche, Bologna, ItalyDipartimento di Scienze e Tecnologie Agrarie, Alimentari, Ambientali e Forestali – Sezione Patologia Vegetale ed Entomologia, Università degli Studi di Firenze, Firenze, ItalyUniversité de Reims Champagne-Ardenne, Unité Résistance Induite et Bioprotection des Plantes, SFR Condorcet FR CNRS 3417, Reims, FranceGrapevine trunk diseases (GTDs) are a serious and growing threat to vineyards worldwide. The need for innovative control tools persists since pesticides used against some GTDs have been banned and only methods to prevent infections or to reduce foliar symptoms have been developed so far. In this context, the application of imaging methods, already applied to study plant–microbe interactions, represents an interesting approach to understand the effect of experimental treatments applied to reduce fungal colonization, on GTD-related pathogens activity. To this aim, trials were carried out to evaluate the efficacy of copper-based treatments, formulated with hydroxyapatite (HA) as co-adjuvant with innovative delivery properties, loaded with two different copper(II) compounds (tribasic sulfate and sulfate pentahydrate), and applied to grapevine propagation material to inhibit fungal wood colonization. The treated rootstock (Vitis berlandieri × Vitis riparia cv. K5BB) and scion cuttings (Vitis vinifera L., cv. Chardonnay) had been inoculated with a strain of Phaeoacremonium minimum (Pmi) compared to uninoculated rootstocks. Experimental treatments were applied during the water-soaking process, comparing the copper(II) compounds pure or formulated with HA, to hydrate the cuttings. After callusing, grafted vines were grown under greenhouse conditions in a nursery and inoculated with Pmi::gfp7 or with Pmi wild-type. Fifteen weeks post-inoculation, woody tissues close to the inoculation site were sampled to evaluate the efficiency of the treatments by studying the plant–microbe interaction by confocal laser scanning microscopy (CLSM). Copper and further elements were also quantified in the same tissues immediately after the treatments and on the CLSM samples. Finally, the grapevine defense responses were studied in the leaves of cuttings treated with the same formulations. The present investigation confirmed the relevant interaction of Pmi and the related transformed strain on the vascular tissues of grafted vines. Furthermore, in vitro assay revealed (i) the fungistatic effect of HA and the reduced effect of Cu fungicide when combined with HA. In planta assays showed (ii) the reduction of Pmi infection in propagation material treated with HA-Cu formulations, (iii) the movement of HA-Cu formulations inside the plant tissues and their persistence over time, and (iv) the plant defense reaction following the treatment with pure HA or Cu, or combined.https://www.frontiersin.org/articles/10.3389/fpls.2021.649694/fullcolonizationformulationfungicidehydroxyapatitenurseryplant defense |