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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: Houpert Cécile; Draghia Miruna; Massari Martina;

    ROCK considers cultural heritage as an engine for sustainable growth in European cities. The approach proposed by the project implies dismantling the specialist idea of cultural heritage understood exclusively in terms of conservation. Cultural heritage - especially in its public and unused or underused spaces - is seen, instead, as an incremental and ever-changing repository of value that can drive both spatial and behavioral change. This change occurs in ROCK through incremental experiments based on a continuous exchange between local practices, administrative action and cognitive reflection, giving shape to a research-action-research methodology.

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    Authors: Manino, Aulo;
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    Authors: Bodino N.; Cavalieri V.; Dongiovanni C.; Altamura G.; +3 Authors

    For insect-borne plant pathogens, transmission biology is of major importance in outlining the disease epidemiology. The characteristics of acquisition, persistence and transmission of X. fastidiosa ST53 by the spittlebug Philaenus spumarius, the main vector in Apulia, are not yet described; similarly, transmission competence of the potential vector Cicadella viridis, the most common sharpshooter in Europe, is unknown. In this perspective, two sets of experiments were performed in 2017 and 2018 to study: i) the kinetics of bacterial multiplication and persistence in P. spumarius and C. viridis; ii) the influence of temperature, season and age of P. spumarius adults on simulated epidemic progression on olive plants under indoor and outdoor conditions. For the kinetics experiments, following the acquisition, insects were serially transferred in groups of five to olive or periwinkle test plants. In simulated epidemic progression experiments, after the acquisition, groups of insects were isolated in cages with 16 olive seedlings for different inoculation periods. Acquisition and transmission rates were assessed by testing individual insects after inoculation and by testing recipient plants 6 and 10 months post-inoculation. Furthermore, acquisition and transmission of X. fastidiosa ST53 by C. viridis were tested through an in vitro acquisition system. Overall, about 900 insects and 170 plants were tested in kinetics experiments, while about 800 spittlebugs and 1,500 plants were studied in simulated epidemic progression experiments. Preliminary results for P. spumarius indicate: a) a higher acquisition efficiency in September than July; b) a lower acquisition efficiency from periwinkle compared with olive as source plants, but higher transmission efficiency to periwinkle compared with olive as recipient plants. Cicadella viridis was able to acquire and transmit X. fastidiosa following acquisition on artificial diet or periwinkle, although with low efficiency.

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    Other literature type . Article . Conference object . 2019
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    Authors: Mancuso, T.;
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    Authors: Beierkuhnlein, Frank Weiser; Anna Sauer; Daria Gettueva; Richard Field; Severin D. H. Irl; Ole Vetaas; Alessandro Chiarucci; Samuel Hoffmann; José María Fernández-Palacios; Rüdiger Otto; Anke Jentsch; Antonello Provenzale; Carl;

    Forest fires are drivers of spatial patterns and temporal dynamics of vegetation and biodiversity. On the Canary Islands, large areas of pine forest exist, dominated by the endemic Canary Island pine, Pinus canariensis C. Sm. These mostly natural forests experience wildfires frequently. P. canariensis is well-adapted to such impacts and has the ability to re-sprout from both stems and branches. In recent decades, however, anthropogenically caused fires have increased, and climate change further enhances the likelihood of large forest fires. Through its dense, long needles, P. canariensis promotes cloud precipitation, which is an important ecosystem service for the freshwater supply of islands such as La Palma. Thus, it is important to understand the regeneration and vegetation dynamics of these ecosystems after fire. Here, we investigated species diversity patterns in the understory vegetation of P. canariensis forests after the large 2016 fire on the southern slopes of La Palma. We analyzed the effect of fire intensity, derived from Sentinel-2 NDVI differences, and of environmental variables, on species richness (alpha diversity) and compositional dissimilarity (beta diversity). We used redundancy analysis (dbRDA), Bray–Curtis dissimilarity, and variance partitioning for this analysis. Fire intensity accounted for a relatively small proportion of variation in alpha and beta diversity, while elevation was the most important predictor. Our results also reveal the important role of the endemic Lotus campylocladus ssp. hillebrandii (Christ) Sandral & D.D.Sokoloff for understory diversity after fire. Its dominance likely reduces the ability of other species to establish by taking up nutrients and water and by shading the ground. The mid- to long-term effects are unclear since Lotus is an important nitrogen fixer in P. canariensis forests and can reduce post-fire soil erosion on steep slopes.

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    Forests
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      Forests
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    Authors: Marino, T.; Figoli, A.; Chianese, E.; Rimauro, J.; +3 Authors

    In this work, a membrane-based separation was investigate for Scenedesmus almeriensis solutions dewatering. A commercial polyvinylidene fluoride (PVDF) membrane, having a pore size of 3 ?m was used in order to allow the water passage through it (permeate), retaining, at the same time, algae biomass (retentate). The possibility to reuse the permeate for a second Scenedesmus almeriensis growth step, was also studied. The registered data evidenced the feasibility of the membrane-based dewatering as an alternative competitive technology, even though the recovery of water should need further investigations to be optimized.

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    Authors: Giampiero, Pietrocola; Giulia, Nobile; Valentina, Gianotti; Marta, Zapotoczna; +3 Authors

    PUBLISHED Staphylococcus aureus is a commensal bacterium that has the ability to cause superficial and deep-seated infections. Like several other invasive pathogens, S. aureus can capture plasminogen from the human host where it can be converted to plasmin by host plasminogen activators or by endogenously expressed staphylokinase. This study demonstrates that sortase-anchored cell wall-associated proteins are responsible for capturing the bulk of bound plasminogen. Two cell wall-associated proteins, the fibrinogen- and fibronectin-binding proteins A and B, were found to bind plasminogen, and one of them, FnBPB, was studied in detail. Plasminogen captured on the surface of S. aureus- or Lactococcus lactis-expressing FnBPB could be activated to the potent serine protease plasmin by staphylokinase and tissue plasminogen activator. Plasminogen bound to recombinant FnBPB with a KD of 0.532 ?m as determined by surface plasmon resonance. Plasminogen binding did not to occur by the same mechanism through which FnBPB binds to fibrinogen. Indeed, FnBPB could bind both ligands simultaneously indicating that their binding sites do not overlap. The N3 subdomain of FnBPB contains the full plasminogen-binding site, and this includes, at least in part, two conserved patches of surface-located lysine residues that were recognized by kringle 4 of the host protein. This work was supported by Fondazione CARIPLO Grant Vaccines 2009-3546 (to P. S.) and European Union's Horizon 2020 Research and Innovation Program Grant 634588. The authors declare that they have no conflicts of interest with the contents of this article.

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    Journal of Biological Chemistry
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    Europe PubMed Central
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    Authors: Dongiovanni C.; Cavalieri V.; Fumarola G.; Di Carolo M.; +3 Authors

    In the olive groves, the main factor regulating spittlebugs population level is the abundances of vegetables ground cover and its species composition. Control of the juvenile’s vector population by soil tilling to reduce the emergence of adults represents one of the most efficient and environmentally sustainable approach toward the control of the spread of Xylella fastidiosa in the infected area, or to reduce the risk of its establishment in the buffer zones or free areas. In order to identify alternative strategies for soil management in olive groves, for two consecutive years (2017 – 2018) we compared five different soil management techniques: (i) natural and undisturbed ground vegetation; (ii) soil tilling performed twice (in early winter and in spring when the majority of the nymphs were at the IV instar); (iii) soil tilling performed only in winter; (iv) sowing Lolium spp; (v) sowing Hordeum vulgare. Two surveys per year were carried out. In each thesis, of approx. 3,000m2, 30 subplots of 0.25 m2 randomly distributed were surveyed by counting the number of spittle/plants and number of specimens (P. spumarius and N. campestris)/spittle. Soil tilling performed in winter and spring, effectively reduced almost to zero the presence of both spittlebug species, with an Abbott’s index equal to 99.6%. Conversely, when soil tilling was performed only in winter, it proved to be effective for reducing N. campestris population (Abbott’s index ranged from 50% to 60%) but not for P. spumarius. Sowing in winter Lolium spp. and Hordeum vulgare reduced P. spumarius juvenile populations, with an Abbott’s index of 60% and 40%, respectively. Whereas, results were inconsistent for N. campestris: in 2017 on both Poaceae treatment, the juvenile populations were lower than on the undisturbed natural ground cover, with an Abbott index equal to 58% (Lolium) and 86% (Hordeum vulgare), while the population resulting mostly abundant during survey carried out in 2018. These data further support the effectiveness of mechanical interventions for reducing incidence of juvenile of spittlebugs, and that using poaceae species to replace the ground vegetation may contribute to lowering P. spumarius populations.

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    Authors: Santoro, Veronica; Lerda, Cristina; Martin, Maria; Said-Pullicino, Daniel; +1 Authors
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    Authors: Burlando, Catie; Pisani, Elena; Vicentini, Kamini; Secco, Laura;
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    Authors: Houpert Cécile; Draghia Miruna; Massari Martina;

    ROCK considers cultural heritage as an engine for sustainable growth in European cities. The approach proposed by the project implies dismantling the specialist idea of cultural heritage understood exclusively in terms of conservation. Cultural heritage - especially in its public and unused or underused spaces - is seen, instead, as an incremental and ever-changing repository of value that can drive both spatial and behavioral change. This change occurs in ROCK through incremental experiments based on a continuous exchange between local practices, administrative action and cognitive reflection, giving shape to a research-action-research methodology.

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    Authors: Manino, Aulo;
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    Authors: Bodino N.; Cavalieri V.; Dongiovanni C.; Altamura G.; +3 Authors

    For insect-borne plant pathogens, transmission biology is of major importance in outlining the disease epidemiology. The characteristics of acquisition, persistence and transmission of X. fastidiosa ST53 by the spittlebug Philaenus spumarius, the main vector in Apulia, are not yet described; similarly, transmission competence of the potential vector Cicadella viridis, the most common sharpshooter in Europe, is unknown. In this perspective, two sets of experiments were performed in 2017 and 2018 to study: i) the kinetics of bacterial multiplication and persistence in P. spumarius and C. viridis; ii) the influence of temperature, season and age of P. spumarius adults on simulated epidemic progression on olive plants under indoor and outdoor conditions. For the kinetics experiments, following the acquisition, insects were serially transferred in groups of five to olive or periwinkle test plants. In simulated epidemic progression experiments, after the acquisition, groups of insects were isolated in cages with 16 olive seedlings for different inoculation periods. Acquisition and transmission rates were assessed by testing individual insects after inoculation and by testing recipient plants 6 and 10 months post-inoculation. Furthermore, acquisition and transmission of X. fastidiosa ST53 by C. viridis were tested through an in vitro acquisition system. Overall, about 900 insects and 170 plants were tested in kinetics experiments, while about 800 spittlebugs and 1,500 plants were studied in simulated epidemic progression experiments. Preliminary results for P. spumarius indicate: a) a higher acquisition efficiency in September than July; b) a lower acquisition efficiency from periwinkle compared with olive as source plants, but higher transmission efficiency to periwinkle compared with olive as recipient plants. Cicadella viridis was able to acquire and transmit X. fastidiosa following acquisition on artificial diet or periwinkle, although with low efficiency.

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    Authors: Mancuso, T.;
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    Authors: Beierkuhnlein, Frank Weiser; Anna Sauer; Daria Gettueva; Richard Field; Severin D. H. Irl; Ole Vetaas; Alessandro Chiarucci; Samuel Hoffmann; José María Fernández-Palacios; Rüdiger Otto; Anke Jentsch; Antonello Provenzale; Carl;

    Forest fires are drivers of spatial patterns and temporal dynamics of vegetation and biodiversity. On the Canary Islands, large areas of pine forest exist, dominated by the endemic Canary Island pine, Pinus canariensis C. Sm. These mostly natural forests experience wildfires frequently. P. canariensis is well-adapted to such impacts and has the ability to re-sprout from both stems and branches. In recent decades, however, anthropogenically caused fires have increased, and climate change further enhances the likelihood of large forest fires. Through its dense, long needles, P. canariensis promotes cloud precipitation, which is an important ecosystem service for the freshwater supply of islands such as La Palma. Thus, it is important to understand the regeneration and vegetation dynamics of these ecosystems after fire. Here, we investigated species diversity patterns in the understory vegetation of P. canariensis forests after the large 2016 fire on the southern slopes of La Palma. We analyzed the effect of fire intensity, derived from Sentinel-2 NDVI differences, and of environmental variables, on species richness (alpha diversity) and compositional dissimilarity (beta diversity). We used redundancy analysis (dbRDA), Bray–Curtis dissimilarity, and variance partitioning for this analysis. Fire intensity accounted for a relatively small proportion of variation in alpha and beta diversity, while elevation was the most important predictor. Our results also reveal the important role of the endemic Lotus campylocladus ssp. hillebrandii (Christ) Sandral & D.D.Sokoloff for understory diversity after fire. Its dominance likely reduces the ability of other species to establish by taking up nutrients and water and by shading the ground. The mid- to long-term effects are unclear since Lotus is an important nitrogen fixer in P. canariensis forests and can reduce post-fire soil erosion on steep slopes.

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    Authors: Marino, T.; Figoli, A.; Chianese, E.; Rimauro, J.; +3 Authors

    In this work, a membrane-based separation was investigate for Scenedesmus almeriensis solutions dewatering. A commercial polyvinylidene fluoride (PVDF) membrane, having a pore size of 3 ?m was used in order to allow the water passage through it (permeate), retaining, at the same time, algae biomass (retentate). The possibility to reuse the permeate for a second Scenedesmus almeriensis growth step, was also studied. The registered data evidenced the feasibility of the membrane-based dewatering as an alternative competitive technology, even though the recovery of water should need further investigations to be optimized.

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    Authors: Giampiero, Pietrocola; Giulia, Nobile; Valentina, Gianotti; Marta, Zapotoczna; +3 Authors

    PUBLISHED Staphylococcus aureus is a commensal bacterium that has the ability to cause superficial and deep-seated infections. Like several other invasive pathogens, S. aureus can capture plasminogen from the human host where it can be converted to plasmin by host plasminogen activators or by endogenously expressed staphylokinase. This study demonstrates that sortase-anchored cell wall-associated proteins are responsible for capturing the bulk of bound plasminogen. Two cell wall-associated proteins, the fibrinogen- and fibronectin-binding proteins A and B, were found to bind plasminogen, and one of them, FnBPB, was studied in detail. Plasminogen captured on the surface of S. aureus- or Lactococcus lactis-expressing FnBPB could be activated to the potent serine protease plasmin by staphylokinase and tissue plasminogen activator. Plasminogen bound to recombinant FnBPB with a KD of 0.532 ?m as determined by surface plasmon resonance. Plasminogen binding did not to occur by the same mechanism through which FnBPB binds to fibrinogen. Indeed, FnBPB could bind both ligands simultaneously indicating that their binding sites do not overlap. The N3 subdomain of FnBPB contains the full plasminogen-binding site, and this includes, at least in part, two conserved patches of surface-located lysine residues that were recognized by kringle 4 of the host protein. This work was supported by Fondazione CARIPLO Grant Vaccines 2009-3546 (to P. S.) and European Union's Horizon 2020 Research and Innovation Program Grant 634588. The authors declare that they have no conflicts of interest with the contents of this article.

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    Journal of Biological Chemistry
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    License: CC BY
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    Journal of Biological Chemistry
    Article . 2016 . Peer-reviewed
    License: CC BY
    Data sources: Crossref
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    Europe PubMed Central
    Other literature type . 2016
    Data sources: PubMed Central
    https://doi.org/10.1074/jbc.M1...
    Article . Peer-reviewed
    Data sources: Crossref
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