Short description of the project ULBESimone202014-11-14T07:51:00Z2015-08-24T12:26:00Z2015-08-24T12:26:00Z112597182Aarhus University5916842511.0000Short description of the project Project short name and titleReSolVe- Restoring optimal Soil functionality in degraded areas within organic VineyardsProject summaryThe ReSolVe project aims at testing the effects of selected agronomic strategies for restoring optimal soil functionality in degraded areas within organic vineyard. The term "degraded areas within vineyard" means areas having been reduced vine growth, disease resistance, grape yield and quality. These areas can have lost their soil functionality because of either an improper land preparation, or an excessive loss of soil organic matter and nutrients, erosion and/or compaction, metal accumulation. The project will individuate the main causes of the soil functionality loss and test different organic recovering methods, such as adding compost, adoption of green manure with different species, and dry mulching. The effects of these techniques will be tested through the monitoring of soil organic matter content and turnover, soil nitrogen and water availability, soil and root-zone microbial and microfauna biodiversity, soil enzymes, plant water stress, plant phenology, and grape yield and quality. The techniques will also be tested for the capability to reduce the copper bio-availability. The project involves 8 research groups in 6 different EU countries, which are Italy, France, Spain, Sweden, Slovenia, and Turkey. The experimental vineyards are situated in Italy (Tuscany), France (Bordeaux and Languedoc), Spain (La Rioja) and Slovenia (Primorska) for winegrape, and in Turkey (Adana and Mersin) for table grape.The results of the project will be made available through the project portal and by publishing guidelines on soil functionality restoring techniques. Best practices of soil management and soil functionality restoring will be transferred to grape-growers, agricultural industry confederations, and agronomists through preparation of marketing materials (posters, flyers, brochures) and local training workshops.Project results will be also popularized through current collaborations with national web-platforms of best practices groups, as well as with participation to Focus groups of EIP-AGRI.Aim, objectives and hypothesesIn both conventional and organic European vineyards, it is quite common to have areas characterized by problems in vine health, grape production and quality. These problems are very often related to sub-optimal soil functionality, caused by an improper land preparation before vine plantation and/or management. Different causes for soil malfunctioning can include: poor organic matter content and plant nutrient availability (both major and trace elements); imbalance of some element ratios (Ca/Mg, K/Mg, P/Fe, and Fe/Mn); pH; water deficiency; soil compaction and/or scarce oxygenation; and soil Cu-toxicity. These causes can be present simultaneously and interact to decrease grapevine performance (Lanyon et al., 2004) and increase nutritional deficiencies (Tagliavini and Rombol**, 2001, Mart**nez-Casasnovas and Ramos, 2009).The main hypothesis of this research project is the following: ***the degraded areas within vineyards can be restored to the target soil functionality for grapevine. This can be obtained by different site-specific management strategies that follow organic principles including: i) addition of different types of compost; ii) green manure; iii) permanent grass cover and dry mulching***. The overall objective of the project is testing the effects of the different management strategies on: i) soil physical, chemical, and biological quality; ii) grapevine healthy growth and performance; iii) grape yield and quality. In particular, the effects of the different strategies will be evaluated for the following expected results: i) increasing soil organic matter (SOM), structure, and nutrient availability, both in the topsoil and in depth; ii) increasing soil microbiota and mesofauna diversity with particular attention to those species antagonist to vine-root diseases; iii) increasing vine-roots development and mycorrhization; iv) reducing the risks of soil copper toxicity for plants and soil biota; v) improving grapevine efficiency, grape yield and quality, and their stability over the years; viii) decreasing vine-root diseases. The expected results will be checked through a comprehensive and integrated set of variables, considering the different ecosystem functions in the vineyard. Then another object of the project is to set up and test a comprehensive common protocol of analyses and measurements for vineyard ecosystemic functioning assessment, which could be applied at the European level.Expected results and their impact/applicationThe first result from the ReSolVe project is the development of specific management techniques for restoring optimal soil functionality in degraded areas within vineyards, caused by an improper land preparation and/or management. The ReSolVe project will provide guidelines for restoring optimal soil functionality and for limiting copper bioavailability in vineyard and, in general, in other perennial crops, through organic soil management strategies. In particular, the different restoring strategies will be tested to establish the efficiency regarding: i) optimizing plant growth; ii) getting higher grape yield and quality; iii) optimizing soil ecosystem services and their stability over the years; iv) reducing copper bioavailability; v) better express the ***terroir effect***, that is, the linkage of wine quality to the environmental characteristics of the cultivation site.The awareness of the soil functionality loss in vineyards, coupled with the dissemination of best-practices for restoring optimal soil functionality for grapevine, will contribute to make European organic vineyards more homogeneous in terms of efficiency, grapevine health and soil ecosystem services. The tested management techniques could be adopted in the ***Rural development programmes*** and plans passed by national and local authorities in the framework of the Common agricultural policy of Europe.The second result from the project is setting a comprehensive protocol of analyses and measurements for vineyard ecosystemic functioning assessment, tuned to European vineyard conditions. The restoration techniques and the monitoring methodologies developed and tested during the ReSolVe project will be described in specific final guidelines. The restoration techniques will be accessible for all the European farmers and will be low cost and environmental-friendly. The dissemination of best practices for soil functionality restoration and optimal soil management in vineyard will allow for increasing grape yield and quality and, at the same time, making vineyard management more sustainable and resilient to climate change. An important technique tested during the project will be the use of the compost on-farm, which includes farm wastes such as pruning residues, grape marc and stalks. This strategy for crop residue recycling fits the demand of directive 2008/98/CE related to waste management and environmental protection. The protocol of analyses and measurements will allow an effective and comparable monitoring of vineyard ecosystemic functioning in European countries. The analyses that will be proved to be more robust and effective to assess ecosystem functioning will be selected to become a standard for the comparison of management options in both organic and non-organic farming.Coordinator, partners and countries involved1) CRA-ABP, Consiglio per la Ricerca e la sperimentazione in Agricoltura, Research Center for Agrobiology and Pedology, Firenze (ITALY) *** Project Coordinator: Edoardo A.C. Costantini; vice-coordinator: Simone Priori.2) Bordeaux Sciences Agro, Bordeaux (FRANCE) *** WG leader: Maarten Van Helden3) Vitinnov-ADERA, Bordeaux (FRANCE) *** WG leader: Emma Fulchin4) Universidad de la Rioja, Logro**o (SPAIN) *** WG leader: Javier Tard**guila5) **ukurova University, Faculty of Agriculture, Adana (TURKEY) *** WG leader: Semih Tangolar6) Alata BKAI Horticultural Research station, General Directorate of Agricultural Research and Policy, Erdemli, Mersin (TURKEY) *** WG leader: Mehmet Erdem K**raz7) SLU- Swedish University of Agricultural Sciences, Uppsala (SWEDEN) *** WG leader: Anna M**rtensson8) KIS- Agricultural Institute of Slovenia, Ljubljana (SLOVENIA)- WG leader: Hans-Josef Schroers2/9j/4AAQSkZJRgABAgEBLAEsAAD/4Q4oRXhpZgAATU0AKgAAAAgABwESAAMAAAABAAEAAAEaAAUA AAABAAAAYgEbAAUAAAABAAAAagEoAAMAAAABAAIAAAExAAIAAAAcAAAAcgEyAAIAAAAUAAAAjodp AAQAAAABAAAApAAAANAALcbAAAAnEAAtxsAAACcQQWRvYmUgUGhvdG9zaG9wIENTMyBXaW5kb3dz 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