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  • Authors: Harju, Anni; Venäläinen, Martti; Laakso, Tapio; Saranpää, Pekka;

    Tutkimusaineisto julkaisuun: Harju, A.M., Venäläinen, M., Laakso, T. & Saranpää, P. 2009. Wounding response in xylem of Scots pine seedlings shows wide genetic variation and connection with the constitutive defence of heartwood. Tree Physiology 29: 19–25. Aineisto liittyy julkaisuun, jossa tutkittiin, voidaanko nuorten männyn taimien runkoon herättää (indusoida) männyn sydänpuulle tyypillisten uuteaineiden tuotanto. Nuorissa taimissa ei tavallisesti ole kyseisiä yhdisteitä. Indusointi tehtiin kasvukauden alussa poraamalla reikiä kasvihuoneessa muutaman vuoden ajan kasvatettujen taimien runkojen läpi. Kasvukauden loputtua taimien rungoista otettiin näytteet poranreikien ympäriltä ja näytteille tehtiin kemiallinen analyysi. Taimiaineisto oli peräisin männyn jälkeläiskokeella kasvavista emopuista, joiden sydänpuun uuteainekoostumus tunnettiin. Tutkimuksessa taimien rungoista löytyi sekä männyn sydänpuulle että sisäoksille tyypillisiä yhdisteitä. Koska kyseessä oli perherakenteinen aineisto, pystyttiin uuteainepitoisuuksille laskemaan periytyvyysaste (heritabiliteetti). Taimiaineistoon indusoituneiden uuteaineiden pitoisuuksien periytyvyysaste oli korkea. Lisäksi vaikutti siltä, että emopuiden kehityksellisellä (konstitutiivisella) uuteaineiden tuotantokyvyllä oli yhteys niiden jälkeläisten indusoituvaan uuteainetuotantoon. Tutkimusaineistot, niihin liittyvät ohjeet sekä muuttujien ja mittayksiköiden kuvaukset on tallennettu Excel-tiedoston välilehdille. #### Excel-tiedoston välilehtien sisältö: Excel-tiedoston sisältö ja tutkimuksen kysymyksenasettelu: Sisältö Seloste_Kysymyksenasettelu Emopuiden valinta ja taimikasvatus: Seloste_Emopuut Seloste_Taimikasvatus DATA_taimien pituus Muuttujat_pituusDATA Taimien poraus: Seloste_induktiokoejärjestely Seloste_taimien poraaminen Kokeen purku: Seloste_Kokeen purkuohje Kemiallinen analyysi: Seloste_kemiallinen analyysi Induktio_raakaDATA Muuttujat_induktio_raakaDATA korjauskerroin Lopulliset aineistot: DATA_induktio_korjattu Muuttujat_korjattu_induktioDATA DATA_emot_kemia Muuttujat_emot_kemiaDATA Tilastollisen analyysin kuvaus: Seloste_Data-analyysi #### Projekti ja rahoitus: Metsäntutkimuslaitoksen projekti nro 3363 "Puuraaka-aineen ominaisuuksien hallinta metsänjalostuksen- ja -kasvatuksen keinoin"

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  • Authors: Korhonen, Kari T.;

    Valtakunnan metsien inventointi (VMI) on tilastolliseen otantaan pohjautuva inventointi, joka perustuu systemaattiseen koealojen mittaukseen koko Suomesta. Nykyään VMI toistetaan viiden vuoden välein. Nämä tiedot ovat 11. VMI-syklistä (2009-2013). VMI11:sta koealoista viidesosa on pysyviä, ja neljäviidesosaa tilapäisiä. Nämä tiedot sisältävät vain tilapäisten koealojen mittaukset metsämaalla tai huonosti tuottavalla metsämaalla. Rajoituksena aineistolle on, että kahden maankäytön tai metsikön rajalla olevat koealat on jätetty pois. Aineisto sisältää muutamia valikoituja muuttujia, jotka kuvaavat koealan metsikköä ja puuston kasvua (lajiryhmittäin). Koska tiedot ovat vain osaotos VMI:n täydestä tiedosta, sitä ei voida käyttää puolueettoman metsävaratilaston laskennassa. Näitä valittuja tietoja voidaan käyttää esimerkiksi perustietona kaukokartoitusta varten tai karttatietojen validointiin. National Forest Inventory (NFI) is a forest monitoring system based on systematic sampling on all land. Nowadays, NFI is repeated in every 5 years. These data are from the 11th NFI cycle (2009-2013). One fifth of the NFI11 field plot clusters are permanent, 4 fifths temporary. These data contains only the temporary field plots measured in forest land or poorly produtive forest land. Another restriction of the data is that field plots at the border of two land use or forest stand borders are excluded. The data contains few selected variables describing the forest stand and volume of growing stock (by species group) measured at the plot location. Because the data are only a sub-sample of the full NFI data it cannot be used for calculating unbiased forest resource statistics. These selected data may be used for example as a ground truth data for remote sensing or for validation of map data.

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  • Authors: Korhonen, Kari T.;

    National Forest Inventory (NFI) is a forest monitoring system based on systematic sampling on all land. Nowadays, NFI is repeated in every 5 years. These data are from the 12th NFI cycle (2014-2018). 60% of the NFI12 field plot clusters are permanent, 40% are temporary. The data contain selected variables describing the forest stand where the NFI sample plot has fallen. In addition, the data include biomass (metric tons per hectare) and volume of growing stock (cubic meters per hectare) by species group measured at the plot location. If the plot are divided in two stand compartments, both stand compartment have an individual data record. In such a case, the plot biomasses or volumes are not corrected by the relative size of the partial plot. Plot coodinates are given at 1 kilometer accuracy to protect the permanent plots. Valtakunnan metsien inventointi (VMI) on tilastolliseen otantaan pohjautuva inventointi, joka perustuu systemaattiseen koealojen mittaukseen koko Suomesta. Nykyään VMI toistetaan 5 vuoden välein. Nämä tiedot ovat 12. VMI-syklistä (2014-2018). 60 % VMI12 koealoista on pysyviä, ja 40 % tilapäisiä. Aineisto sisältää valikoituja muuttujia, jotka kuvaavat metsikköä, johon VMI-koeala sijoittuu. Lisäksi aineisto sisältää koealalta mitatun biomassan määrän (tonnia/hehtaari) ja kasvuston tilavuuden (kuutiometriä/hehtaari) lajiryhmittäin ilmoitettuna. Jos koeala on jaettu kahteen osaan, molemmista osista on oma tietueensa. Tällöin koealan biomassoja tai tilavuuksia ei korjata osittaisen koealan suhteellisella koolla. Koemetsiköiden koordinaatit on annettu yhden kilometrin tarkkuudella pysyvien koealojen suojaamiseksi.

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  • Authors: Ikäheimo, Janne;

    Tutkimusaineisto käsikirjoitukseen "Tervahautojen ilmalaserkeilausavusteinen työpöytäinventointi Suomussalmella"

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  • Authors: Debenjak-Ij��s, Annukka; Saari, Sanna; Bonnie, Rick;

    This material package contains seven 3D-printable 3D digitizations of ancient Near Eastern objects, and detailed instructions of the 3D printing process. The language of the material is Finnish. The material is created as a part of the research project ���Making Home Abroad: Understanding Migrant Experiences and Heritage Implementation in Finland���. The aim of the project was, among other topics, to develop and implement critical, hands-on pedagogical resources from stored-away archaeological objects from the Ancient Near East in Finnish museum collections through 3D digitization and 3D printing. The project was led by Dr. Doc. Rick Bonnie and funded by the Finnish Cultural Foundation. Over 70 3D digitizations were made of Ancient Near Eastern and Roman objects from the collections of the Finnish Heritage Agency, The Finnish National Museum, the Raahe Museum and the Gallen-Kallela museum. The objects to be digitized were chosen by Dr. Sanna Saari, representing different find types from diverse cultural backgrounds, which support the pedagogical aims of the project. The 3D digitization process was accomplished by Annukka Debenjak-Ij��s, MA during 2020-2021. Materiaalipakettiin sis��ltyy seitsem��n 3D-tulostukseen valmisteltua muinaisen L��hi-id��n arkeologisista l��yd��ist�� tehty�� 3D-digitointia, sek�� yksityiskohtaiset ohjeet 3D-tulostukseen. Aineisto on luotu osana Making Home Abroad / Kotona Kulttuurissa ���tutkimushanketta. Hanke muun muassa tuottaa 3D-digitoinnin ja 3D-tulostamisen avulla opetusmateriaalia suomalaisiin museokokoelmiin kuuluvista arkeologisista l��yd��ist��, joiden alkuper�� on L��hi-id��ss��. Hankkeen johtajana toimii FT Rick Bonnie. Suomen museoviraston, Kansallismuseon, Raahen museon sek�� Gallen-Kallelan museon kokoelmista 3D-digitoitiin noin 70 muinaisen L��hi-Id��n ja Rooman alueelta per��isin olevaa esinett��. Digitoitavat esineet valitsi FT Sanna Saari ja 3D-digitoinnin toteutti FM Annukka Debenjak-Ij��s. Tavoitteena oli tuottaa hankkeen pedagogisten tavoitteiden tueksi monipuolinen kokoelma 3D-digitointeja, jotka edustavat erilaisia esinetyyppej�� eri kulttuureista. 3D-digitointiprosessi suoritettiin vuosien 2020-2021 aikana.

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: M��rquez, Silvia; L��zaro, Elena; Zornoza, Ra��l;

    Introductory video about H2020 Diverfarming project. We show here the benefits of diversified cropping systems and why Europe needs crop diversification. With the long-term view of increasing diversification and biodiversity in Europe and fostering sustainable development of bioeconomy, the Diverfarming consortium come together to develop and deploy innovative farming and agribusiness strategies. Diverfarming will increase the long-term resilience, sustainability and economic revenues of agriculture across the EU by assessing the real benefits and minimising the limitations, barriers and drawbacks of diversified cropping systems under low-input agronomic practices that are tailor-made to fit the unique characteristics of six EU pedoclimatic regions (Mediterranean south and north, Atlantic central, Continental, Pannonian and Boreal), and by adapting and optimising the downstream value chains organization. This approach will provide: i) increased overall land productivity; ii) more rational use of farm land and farming inputs (water, energy, machinery, fertilisers, pesticides); ii) improved delivery of ecosystem services by increments in biodiversity and soil quality; iii) proper organization of downstream value chains adapted to the new diversified cropping systems with decreased use of energy; and iv) access to new markets and reduced economy risks by adoption of new products in time and space. The diversified cropping systems will be tested in field case studies for major crops within each pedoclimatic region. In the end, Diverfarming focuses on research and innovation for rural development, with emphasis on developing new framework systems and business models adapted to the rural context of each pedoclimatic area of the EU, to foster sustainable growth through adoption of diversification, sustainable practices and efficient use of resources.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ZENODOarrow_drop_down
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    Audiovisual . 2018
    License: CC BY SA
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Silvia Márquez; Elena Lázaro; Raúl Zornoza;

    Introductory video about H2020 Diverfarming project. We show here the benefits of diversified cropping systems and why Europe needs crop diversification. With the long-term view of increasing diversification and biodiversity in Europe and fostering sustainable development of bioeconomy, the Diverfarming consortium come together to develop and deploy innovative farming and agribusiness strategies. Diverfarming will increase the long-term resilience, sustainability and economic revenues of agriculture across the EU by assessing the real benefits and minimising the limitations, barriers and drawbacks of diversified cropping systems under low-input agronomic practices that are tailor-made to fit the unique characteristics of six EU pedoclimatic regions (Mediterranean south and north, Atlantic central, Continental, Pannonian and Boreal), and by adapting and optimising the downstream value chains organization. This approach will provide: i) increased overall land productivity; ii) more rational use of farm land and farming inputs (water, energy, machinery, fertilisers, pesticides); ii) improved delivery of ecosystem services by increments in biodiversity and soil quality; iii) proper organization of downstream value chains adapted to the new diversified cropping systems with decreased use of energy; and iv) access to new markets and reduced economy risks by adoption of new products in time and space. The diversified cropping systems will be tested in field case studies for major crops within each pedoclimatic region. In the end, Diverfarming focuses on research and innovation for rural development, with emphasis on developing new framework systems and business models adapted to the rural context of each pedoclimatic area of the EU, to foster sustainable growth through adoption of diversification, sustainable practices and efficient use of resources.

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  • Authors: Harju, Anni; Venäläinen, Martti; Laakso, Tapio; Saranpää, Pekka;

    Tutkimusaineisto julkaisuun: Harju, A.M., Venäläinen, M., Laakso, T. & Saranpää, P. 2009. Wounding response in xylem of Scots pine seedlings shows wide genetic variation and connection with the constitutive defence of heartwood. Tree Physiology 29: 19–25. Aineisto liittyy julkaisuun, jossa tutkittiin, voidaanko nuorten männyn taimien runkoon herättää (indusoida) männyn sydänpuulle tyypillisten uuteaineiden tuotanto. Nuorissa taimissa ei tavallisesti ole kyseisiä yhdisteitä. Indusointi tehtiin kasvukauden alussa poraamalla reikiä kasvihuoneessa muutaman vuoden ajan kasvatettujen taimien runkojen läpi. Kasvukauden loputtua taimien rungoista otettiin näytteet poranreikien ympäriltä ja näytteille tehtiin kemiallinen analyysi. Taimiaineisto oli peräisin männyn jälkeläiskokeella kasvavista emopuista, joiden sydänpuun uuteainekoostumus tunnettiin. Tutkimuksessa taimien rungoista löytyi sekä männyn sydänpuulle että sisäoksille tyypillisiä yhdisteitä. Koska kyseessä oli perherakenteinen aineisto, pystyttiin uuteainepitoisuuksille laskemaan periytyvyysaste (heritabiliteetti). Taimiaineistoon indusoituneiden uuteaineiden pitoisuuksien periytyvyysaste oli korkea. Lisäksi vaikutti siltä, että emopuiden kehityksellisellä (konstitutiivisella) uuteaineiden tuotantokyvyllä oli yhteys niiden jälkeläisten indusoituvaan uuteainetuotantoon. Tutkimusaineistot, niihin liittyvät ohjeet sekä muuttujien ja mittayksiköiden kuvaukset on tallennettu Excel-tiedoston välilehdille. #### Excel-tiedoston välilehtien sisältö: Excel-tiedoston sisältö ja tutkimuksen kysymyksenasettelu: Sisältö Seloste_Kysymyksenasettelu Emopuiden valinta ja taimikasvatus: Seloste_Emopuut Seloste_Taimikasvatus DATA_taimien pituus Muuttujat_pituusDATA Taimien poraus: Seloste_induktiokoejärjestely Seloste_taimien poraaminen Kokeen purku: Seloste_Kokeen purkuohje Kemiallinen analyysi: Seloste_kemiallinen analyysi Induktio_raakaDATA Muuttujat_induktio_raakaDATA korjauskerroin Lopulliset aineistot: DATA_induktio_korjattu Muuttujat_korjattu_induktioDATA DATA_emot_kemia Muuttujat_emot_kemiaDATA Tilastollisen analyysin kuvaus: Seloste_Data-analyysi #### Projekti ja rahoitus: Metsäntutkimuslaitoksen projekti nro 3363 "Puuraaka-aineen ominaisuuksien hallinta metsänjalostuksen- ja -kasvatuksen keinoin"

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  • Authors: Korhonen, Kari T.;

    Valtakunnan metsien inventointi (VMI) on tilastolliseen otantaan pohjautuva inventointi, joka perustuu systemaattiseen koealojen mittaukseen koko Suomesta. Nykyään VMI toistetaan viiden vuoden välein. Nämä tiedot ovat 11. VMI-syklistä (2009-2013). VMI11:sta koealoista viidesosa on pysyviä, ja neljäviidesosaa tilapäisiä. Nämä tiedot sisältävät vain tilapäisten koealojen mittaukset metsämaalla tai huonosti tuottavalla metsämaalla. Rajoituksena aineistolle on, että kahden maankäytön tai metsikön rajalla olevat koealat on jätetty pois. Aineisto sisältää muutamia valikoituja muuttujia, jotka kuvaavat koealan metsikköä ja puuston kasvua (lajiryhmittäin). Koska tiedot ovat vain osaotos VMI:n täydestä tiedosta, sitä ei voida käyttää puolueettoman metsävaratilaston laskennassa. Näitä valittuja tietoja voidaan käyttää esimerkiksi perustietona kaukokartoitusta varten tai karttatietojen validointiin. National Forest Inventory (NFI) is a forest monitoring system based on systematic sampling on all land. Nowadays, NFI is repeated in every 5 years. These data are from the 11th NFI cycle (2009-2013). One fifth of the NFI11 field plot clusters are permanent, 4 fifths temporary. These data contains only the temporary field plots measured in forest land or poorly produtive forest land. Another restriction of the data is that field plots at the border of two land use or forest stand borders are excluded. The data contains few selected variables describing the forest stand and volume of growing stock (by species group) measured at the plot location. Because the data are only a sub-sample of the full NFI data it cannot be used for calculating unbiased forest resource statistics. These selected data may be used for example as a ground truth data for remote sensing or for validation of map data.

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  • Authors: Korhonen, Kari T.;

    National Forest Inventory (NFI) is a forest monitoring system based on systematic sampling on all land. Nowadays, NFI is repeated in every 5 years. These data are from the 12th NFI cycle (2014-2018). 60% of the NFI12 field plot clusters are permanent, 40% are temporary. The data contain selected variables describing the forest stand where the NFI sample plot has fallen. In addition, the data include biomass (metric tons per hectare) and volume of growing stock (cubic meters per hectare) by species group measured at the plot location. If the plot are divided in two stand compartments, both stand compartment have an individual data record. In such a case, the plot biomasses or volumes are not corrected by the relative size of the partial plot. Plot coodinates are given at 1 kilometer accuracy to protect the permanent plots. Valtakunnan metsien inventointi (VMI) on tilastolliseen otantaan pohjautuva inventointi, joka perustuu systemaattiseen koealojen mittaukseen koko Suomesta. Nykyään VMI toistetaan 5 vuoden välein. Nämä tiedot ovat 12. VMI-syklistä (2014-2018). 60 % VMI12 koealoista on pysyviä, ja 40 % tilapäisiä. Aineisto sisältää valikoituja muuttujia, jotka kuvaavat metsikköä, johon VMI-koeala sijoittuu. Lisäksi aineisto sisältää koealalta mitatun biomassan määrän (tonnia/hehtaari) ja kasvuston tilavuuden (kuutiometriä/hehtaari) lajiryhmittäin ilmoitettuna. Jos koeala on jaettu kahteen osaan, molemmista osista on oma tietueensa. Tällöin koealan biomassoja tai tilavuuksia ei korjata osittaisen koealan suhteellisella koolla. Koemetsiköiden koordinaatit on annettu yhden kilometrin tarkkuudella pysyvien koealojen suojaamiseksi.

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  • Authors: Ikäheimo, Janne;

    Tutkimusaineisto käsikirjoitukseen "Tervahautojen ilmalaserkeilausavusteinen työpöytäinventointi Suomussalmella"

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  • Authors: Debenjak-Ij��s, Annukka; Saari, Sanna; Bonnie, Rick;

    This material package contains seven 3D-printable 3D digitizations of ancient Near Eastern objects, and detailed instructions of the 3D printing process. The language of the material is Finnish. The material is created as a part of the research project ���Making Home Abroad: Understanding Migrant Experiences and Heritage Implementation in Finland���. The aim of the project was, among other topics, to develop and implement critical, hands-on pedagogical resources from stored-away archaeological objects from the Ancient Near East in Finnish museum collections through 3D digitization and 3D printing. The project was led by Dr. Doc. Rick Bonnie and funded by the Finnish Cultural Foundation. Over 70 3D digitizations were made of Ancient Near Eastern and Roman objects from the collections of the Finnish Heritage Agency, The Finnish National Museum, the Raahe Museum and the Gallen-Kallela museum. The objects to be digitized were chosen by Dr. Sanna Saari, representing different find types from diverse cultural backgrounds, which support the pedagogical aims of the project. The 3D digitization process was accomplished by Annukka Debenjak-Ij��s, MA during 2020-2021. Materiaalipakettiin sis��ltyy seitsem��n 3D-tulostukseen valmisteltua muinaisen L��hi-id��n arkeologisista l��yd��ist�� tehty�� 3D-digitointia, sek�� yksityiskohtaiset ohjeet 3D-tulostukseen. Aineisto on luotu osana Making Home Abroad / Kotona Kulttuurissa ���tutkimushanketta. Hanke muun muassa tuottaa 3D-digitoinnin ja 3D-tulostamisen avulla opetusmateriaalia suomalaisiin museokokoelmiin kuuluvista arkeologisista l��yd��ist��, joiden alkuper�� on L��hi-id��ss��. Hankkeen johtajana toimii FT Rick Bonnie. Suomen museoviraston, Kansallismuseon, Raahen museon sek�� Gallen-Kallelan museon kokoelmista 3D-digitoitiin noin 70 muinaisen L��hi-Id��n ja Rooman alueelta per��isin olevaa esinett��. Digitoitavat esineet valitsi FT Sanna Saari ja 3D-digitoinnin toteutti FM Annukka Debenjak-Ij��s. Tavoitteena oli tuottaa hankkeen pedagogisten tavoitteiden tueksi monipuolinen kokoelma 3D-digitointeja, jotka edustavat erilaisia esinetyyppej�� eri kulttuureista. 3D-digitointiprosessi suoritettiin vuosien 2020-2021 aikana.

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: M��rquez, Silvia; L��zaro, Elena; Zornoza, Ra��l;

    Introductory video about H2020 Diverfarming project. We show here the benefits of diversified cropping systems and why Europe needs crop diversification. With the long-term view of increasing diversification and biodiversity in Europe and fostering sustainable development of bioeconomy, the Diverfarming consortium come together to develop and deploy innovative farming and agribusiness strategies. Diverfarming will increase the long-term resilience, sustainability and economic revenues of agriculture across the EU by assessing the real benefits and minimising the limitations, barriers and drawbacks of diversified cropping systems under low-input agronomic practices that are tailor-made to fit the unique characteristics of six EU pedoclimatic regions (Mediterranean south and north, Atlantic central, Continental, Pannonian and Boreal), and by adapting and optimising the downstream value chains organization. This approach will provide: i) increased overall land productivity; ii) more rational use of farm land and farming inputs (water, energy, machinery, fertilisers, pesticides); ii) improved delivery of ecosystem services by increments in biodiversity and soil quality; iii) proper organization of downstream value chains adapted to the new diversified cropping systems with decreased use of energy; and iv) access to new markets and reduced economy risks by adoption of new products in time and space. The diversified cropping systems will be tested in field case studies for major crops within each pedoclimatic region. In the end, Diverfarming focuses on research and innovation for rural development, with emphasis on developing new framework systems and business models adapted to the rural context of each pedoclimatic area of the EU, to foster sustainable growth through adoption of diversification, sustainable practices and efficient use of resources.

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    Authors: Silvia Márquez; Elena Lázaro; Raúl Zornoza;

    Introductory video about H2020 Diverfarming project. We show here the benefits of diversified cropping systems and why Europe needs crop diversification. With the long-term view of increasing diversification and biodiversity in Europe and fostering sustainable development of bioeconomy, the Diverfarming consortium come together to develop and deploy innovative farming and agribusiness strategies. Diverfarming will increase the long-term resilience, sustainability and economic revenues of agriculture across the EU by assessing the real benefits and minimising the limitations, barriers and drawbacks of diversified cropping systems under low-input agronomic practices that are tailor-made to fit the unique characteristics of six EU pedoclimatic regions (Mediterranean south and north, Atlantic central, Continental, Pannonian and Boreal), and by adapting and optimising the downstream value chains organization. This approach will provide: i) increased overall land productivity; ii) more rational use of farm land and farming inputs (water, energy, machinery, fertilisers, pesticides); ii) improved delivery of ecosystem services by increments in biodiversity and soil quality; iii) proper organization of downstream value chains adapted to the new diversified cropping systems with decreased use of energy; and iv) access to new markets and reduced economy risks by adoption of new products in time and space. The diversified cropping systems will be tested in field case studies for major crops within each pedoclimatic region. In the end, Diverfarming focuses on research and innovation for rural development, with emphasis on developing new framework systems and business models adapted to the rural context of each pedoclimatic area of the EU, to foster sustainable growth through adoption of diversification, sustainable practices and efficient use of resources.

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