Resultados totales (Incluyendo duplicados): 37
Encontrada(s) 4 página(s)
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22428
Imagen (Image). 2022

WEAREHERE! DETECCIÓN DE VIOLENCIA MACHISTA DESDE LA PERSPECTIVA DE LOS NIÑOS Y LAS NIÑAS: RESPUESTAS DEL ALUMNADO AL CUESTIONARIO

  • Montserrat Boada, Carme
  • Soler Masó, Pere
  • Planas Lladó, Anna
  • Iglesias Vidal, Edgar
  • Garcia-Molsosa, Marta
  • Boned, Paula
Recerca duta a terme pel Grup de recerca en Infància, Joventut i Comunitat Liberi, de la Universitat de Girona, Recerca finançada per Fundació "La Caixa", Children's questionnaire answers on sexist violence, Respuestas del alumnado de educación primária i secundária al cuestionario sobre violencia machista, Respostes de l'alumnat d'educació primària i secundària al qüestionari sobre violència masclista

Proyecto: //
DOI: http://hdl.handle.net/10256/22428
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22428
HANDLE: http://hdl.handle.net/10256/22428
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22428
PMID: http://hdl.handle.net/10256/22428
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22428
Ver en: http://hdl.handle.net/10256/22428
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22428

DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22429
Imagen (Image). 2022

WEAREHERE! DETECTING GENDER-BASED VIOLENCE FROM CHILDREN'S PERSPECTIVE: CHILDREN'S QUESTIONNAIRE ANSWERS

  • Montserrat Boada, Carme
  • Soler Masó, Pere
  • Planas Lladó, Anna
  • Iglesias Vidal, Edgar
  • Garcia-Molsosa, Marta
  • Boned, Paula
Recerca duta a terme pel Grup de recerca en Infància, Joventut i Comunitat Liberi, de la Universitat de Girona, Recerca finançada per Fundació "La Caixa", Children's questionnaire answers on sexist violence, Respuestas del alumnado de educación primária i secundária al cuestionario sobre violencia machista, Respostes de l'alumnat d'educació primària i secundària al qüestionari sobre violència masclista

Proyecto: //
DOI: http://hdl.handle.net/10256/22429
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22429
HANDLE: http://hdl.handle.net/10256/22429
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22429
PMID: http://hdl.handle.net/10256/22429
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22429
Ver en: http://hdl.handle.net/10256/22429
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22429

DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22430
Imagen (Image). 2022

SOMAQUÍ! DETECCIÓ DE VIOLÈNCIA MASCLISTA DES DE LA PERSPECTIVA DELS NENS I LES NENES: RESPOSTES DELS INFANTS AL QÜESTIONARI

  • Montserrat Boada, Carme
  • Soler Masó, Pere
  • Planas Lladó, Anna
  • Iglesias Vidal, Edgar
  • Garcia-Molsosa, Marta
  • Boned, Paula
Recerca duta a terme pel Grup de recerca en Infància, Joventut i Comunitat Liberi, de la Universitat de Girona, Recerca finançada per Fundació "La Caixa", Children's questionnaire answers on sexist violence, Respuestas del alumnado de educación primária i secundária al cuestionario sobre violencia machista, Respostes de l'alumnat d'educació primària i secundària al qüestionari sobre violència masclista

Proyecto: //
DOI: http://hdl.handle.net/10256/22430
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22430
HANDLE: http://hdl.handle.net/10256/22430
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22430
PMID: http://hdl.handle.net/10256/22430
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22430
Ver en: http://hdl.handle.net/10256/22430
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22430

DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22431
Imagen (Image). 2022

SOMAQUÍ! DETECCIÓ DE VIOLÈNCIA MASCLISTA DES DE LA PERSPECTIVA DELS NENS I LES NENES: RESPOSTES DELS EQUIPS DIRECTIUS I DOCENTS AL QÜESTIONARI

  • Montserrat Boada, Carme
  • Soler Masó, Pere
  • Planas Lladó, Anna
  • Iglesias Vidal, Edgar
  • Garcia-Molsosa, Marta
  • Boned, Paula
Recerca duta a terme pel Grup de recerca en Infància, Joventut i Comunitat Liberi, de la Universitat de Girona, Recerca finançada per Fundació "La Caixa", Answers from management and teaching teams to the questionnaire on sexist violence, Respuestas de los equipos directivos y docentes al cuestionario sobre violencia machista, Respostes dels equips directius i docents al qüestionari sobre violència masclista

Proyecto: //
DOI: http://hdl.handle.net/10256/22431
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22431
HANDLE: http://hdl.handle.net/10256/22431
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22431
PMID: http://hdl.handle.net/10256/22431
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22431
Ver en: http://hdl.handle.net/10256/22431
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22431

DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22432
Imagen (Image). 2022

WEAREHERE! DETECCIÓN DE VIOLENCIA MACHISTA DESDE LA PERSPECTIVA DE LOS NIÑOS Y LAS NIÑAS: RESPUESTAS DE LOS EQUIPOS DIRECTIVOS Y DOCENTES AL CUESTIONARIO

  • Montserrat Boada, Carme
  • Soler Masó, Pere
  • Planas Lladó, Anna
  • Iglesias Vidal, Edgar
  • Garcia-Molsosa, Marta
  • Boned, Paula
Recerca duta a terme pel Grup de recerca en Infància, Joventut i Comunitat Liberi, de la Universitat de Girona, Recerca finançada per Fundació "La Caixa", Answers from management and teaching teams to the questionnaire on sexist violence, Respuestas de los equipos directivos y docentes al cuestionario sobre violencia machista, Respostes dels equips directius i docents al qüestionari sobre violència masclista

Proyecto: //
DOI: http://hdl.handle.net/10256/22432
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22432
HANDLE: http://hdl.handle.net/10256/22432
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22432
PMID: http://hdl.handle.net/10256/22432
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22432
Ver en: http://hdl.handle.net/10256/22432
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22432

DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22433
Imagen (Image). 2022

WEAREHERE! DETECTING GENDER-BASED VIOLENCE FROM CHILDREN'S PERSPECTIVE: ANSWERS FROM MANAGEMENT AND TEACHING TEAMS TO THE QUESTIONNAIRE

  • Montserrat Boada, Carme
  • Soler Masó, Pere
  • Planas Lladó, Anna
  • Iglesias Vidal, Edgar
  • Garcia-Molsosa, Marta
  • Boned, Paula
Recerca duta a terme pel Grup de recerca en Infància, Joventut i Comunitat Liberi, de la Universitat de Girona, Recerca finançada per Fundació "La Caixa", Answers from management and teaching teams to the questionnaire on sexist violence, Respuestas de los equipos directivos y docentes al cuestionario sobre violencia machista, Respostes dels equips directius i docents al qüestionari sobre violència masclista

Proyecto: //
DOI: http://hdl.handle.net/10256/22433
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22433
HANDLE: http://hdl.handle.net/10256/22433
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22433
PMID: http://hdl.handle.net/10256/22433
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22433
Ver en: http://hdl.handle.net/10256/22433
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/22433

DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/23371
Imagen (Image). 2023

AMB QUÈ ESTAN D’ACORD ELS I LES PROFESSIONALS DEL SISTEMA DE PROTECCIÓ A LA INFÀNCIA I L'ADOLESCÈNCIA A L’HORA DE PROPOSAR UN ACOLLIMENT EN FAMÍLIA ALIENA?

  • Sitjes-Figueras, Rosa
  • Montserrat Boada, Carme
  • Llosada Gistau, Joan
La presa de decisions entorn els acolliments familiars per tal que un infant en situació de desemparament sigui acollit per una família alinea és un procés molt complex, en el qual poden incidir molts factors. L'estudi se centra precisament en analitzar els factors que intervenen en la presa de decisions dels i les professionals pel que fa als acolliments en família aliena a Catalunya, Estudi encarregat per l'Institut Català de l'Acolliment i de l'Adopció (ICAA) i finançat per l’Obra Social "la Caixa"

Proyecto: //
DOI: http://hdl.handle.net/10256/23371
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/23371
HANDLE: http://hdl.handle.net/10256/23371
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/23371
PMID: http://hdl.handle.net/10256/23371
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/23371
Ver en: http://hdl.handle.net/10256/23371
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/23371

DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/23910
Imagen (Image). 2023

PROCESSOS DE PRESA DE DECISIONS EN ELS ACOLLIMENTS D’URGÈNCIA I DIAGNÒSTIC: COM MILLORAR-LOS [FULLET]

  • Sitjes-Figueras, Rosa
  • Montserrat Boada, Carme
  • Soler Masó, Pere
  • Llosada Gistau, Joan
Infografia sobre com millorar els processos de presa de decisions en els acolliments familiars d'urgència i diagnòstic, on es resumeixen els principals punts de l'estudi relatius a objectius, metodologia, anàlisi de resultats i conclusions. L'objectiu general d'aquest estudi és aprofundir en el coneixement dels acolliments d'urgència i diagnòstic per tal de fer propostes de millora i facilitar la presa de decisions dels responsables tècnics i polítics, fent servir una metodologia qualitativa basada en la realització de grups de discussió i entrevistes semiestructurades. Finalment s'exposen els resultats més rellevants a partir de les valoracions realitzades per les persones, famílies, i els/les professionals participants en l'estudi i es presenten les conclusions i unes recomanacions pràctiques sorgides de l'estudi, La recerca ha rebut el suport del Departament de Recerca i Universitats de la Generalitat de Catalunya, concretament del programa d'ajuts predoctorals FI_SDUR, 3

Proyecto: //
DOI: http://hdl.handle.net/10256/23910
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/23910
HANDLE: http://hdl.handle.net/10256/23910
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/23910
PMID: http://hdl.handle.net/10256/23910
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/23910
Ver en: http://hdl.handle.net/10256/23910
DUGiDocs – Universitat de Girona
oai:dugi-doc.udg.edu:10256/23910

Digital.CSIC. Repositorio Institucional del CSIC
oai:digital.csic.es:10261/286137
Dataset. 2022

RESILIENCE OF SEAGRASS POPULATIONS TO THERMAL STRESS DOES NOT REFLECT REGIONAL DIFFERENCES IN OCEAN CLIMATE

  • Bennett, Scott
  • Alcoverro, Teresa
  • Kletou, Demetris
  • Antoniou, Charalampos
  • Boada, Jordi
  • Buñuel, Xavier
  • Cucala, Lidia
  • Jordá, Gabriel
  • Kleitou, Periklis
  • Roca, Guillem
  • Santana Garçon, Julia
  • Savva, Ioannis
  • Vergés, Adriana
  • Marbà, Núria
[Methods] Experiment locations and climate Trans-Mediterranean translocation of Posidonia oceanica fragments took place between Catalunya (Spain), Mallorca (Spain) and Cyprus in July 2018 and were monitored until July 2019 (Fig. 1). Sea surface temperature data for each transplant site were based on daily SST maps with a spatial resolution of 1/4°, obtained from the National Center for Environmental Information (NCEI, https://www.ncdc.noaa.gov/oisst ) (Reynolds et al. 2007). These maps have been generated through the optimal interpolation of Advanced Very High Resolution Radiometer (AVHRR) data for the period 1981-2019. Underwater temperature loggers (ONSET Hobo pro v2 Data logger) were deployed at the transplant sites in Catalunya, Mallorca and Cyprus and recorded hourly temperatures throughout the duration of the experiment (one year). In order to obtain an extended time series of temperature at transplant sites, a calibration procedure was performed comparing logger data with sea surface temperature from the nearest point on SST maps. In particular, SST data were linearly fitted to logger data for the common period. Then, the calibration coefficients were applied to the whole SST time series to obtain corrected-SST data and reconstruct daily habitat temperatures from 1981-2019. Local climate data was also compared to the global thermal distribution of P. oceanica to assess how representative experimental sites were of the thermal distribution of the species (Supplementary materials). Collectively, seawater temperatures from the three locations span the 16th - 99th percentile of temperatures observed across the global thermal distribution of P. oceanica. As such Catalunya, Mallorca and Cyprus are herein considered to represent the cool-edge, centre and warm-edge of P. oceanica distribution, respectively. Transplantation took place toward warmer climates and procedural controls were conducted within each source location, resulting in six source-to-recipient combinations (i.e. treatments, Fig. 1). Initial collection of P. oceanica, handling and transplantation was carried out simultaneously by coordinated teams in July 2018 (Table S1). Each recipient location was subsequently resampled four times over the course of the experiment, in August/September 2018 (T1), October 2018 (T2), April 2019 (T3) and May/June 2019 (T4, Table S1). Between 60-100 fragments were collected for each treatment. A fragment was defined as a section of P. oceanica containing one apical shoot connected with approximately five vertical shoots by approximately 10-15 cm of rhizome with intact roots. Collection occurred at two sites within each location, separated by approximately 1 km. Within sites, collections were conducted between 4 – 5 m depth and were spaced across the meadow to minimise the dominance of a single clone and damage to the meadow. Upon collection, fragments were transported for up to one hour back to the nearest laboratory in shaded seawater. Handling methods In the laboratory, fragments were placed into holding tanks with aerated seawater, at ambient temperature and a 14:10 light-dark cycle. All shoots were clipped to 25 cm length (from meristem to the tip of the longest leaves), to standardise initial conditions and reduce biomass for transportation. For transport by plane or ferry between locations, fragments were packed in layers within cool-boxes. Each layer was separated by frozen cool-packs wrapped in wet tea towels (rinsed in sea water). All fragments spent 12 hrs inside a cool-box irrespective of their recipient destination, including procedural controls (i.e. cool-cool, centre-centre and warm-warm) to simulate the transit times of the plants travelling furthest from their source location (Fig. 1a). On arrival at the destination, fragments were placed in holding tanks with aerated seawater at ambient temperature as described above in their recipient location for 48 hrs, prior to field transplantation. Measurement methods One day prior to transplantation, fragments were tagged with a unique number and attached to U-shaped peg with cable-ties. Morphological traits for each fragment were measured and included: 1) length of the longest apical leaf, width and number of leaves 2) total number of bite marks on leaves of three vertical shoots per fragment, 3) number of vertical shoots, 4) leaf count of three vertical shoots per fragment and 5) overall horizontal rhizome length. A subset (n=10) of fragments per treatment were marked prior transplantation to measure shoot growth. To do this, all shoots within a single fragment were pierced using a hypodermic needle. Two holes were pierced side-by-side at the base of the leaf/top of the meristem. Transplant methods All transplant sites were located in 4 – 5 m depth in area of open dead-matte, surrounded by P. oceanica meadow. In Mallorca and Cyprus, fragments were distributed between two sites, separated by approximately 1 km. In Catalunya, a lack of suitable dead matte habitat, meant that all fragments were placed in one site. Fragments were planted along parallel transects at 50 cm intervals and with a 50 cm gap between parallel transects (Fig. S1). Different treatments were mixed and deployed haphazardly along each transect. Resampling methods and herbivory On day 10 of the experiment, a severe herbivory event was recorded at both warm-edge translocation sites. Scaled photos of all fragments were taken at this time to record the effects of herbivory on transplants. At the end of each main sampling period (T0 – T1, T1-T2 and T3 – T4), all pierced fragments were collected and taken back to the laboratory to measure shoot growth. At T1, T2 and T3, additional sets of fragments (n = 10 per treatment) were marked using the piercing method to record growth in the subsequent time period. In addition, at T1 and T3, n = 20 shoots within the natural meadow at each site were marked to compare growth rates between the native meadow and transplants. Underwater shoot counts and a scaled photo was taken to record fragment survivorship, shoot mortality, bite marks, and shoot length among all remaining fragments within each site and sampling time. In the laboratory, morphological measurements (described above) were repeated on the collected fragments and growth of transplant and natural meadow shoots was measured. Growth (shoot elongation, cm d-1) of the marked shoots was obtained by measuring the length from the base of meristem to marked holes of each leaf (new growth) of the shoot and dividing the leaf elongation per shoot by the marking period (in days). For each shoot, total leaf length (cm shoot-1) and the number of new leaves was also recorded. The rate of new leaf production (new leaves shoot-1 d-1) was estimated dividing the number of new leaves produced per shoot and the marking period. New growth was dried at 60 ºC for 48 hrs to determine carbon and nitrogen content of the leaves, and carbon to nitrogen (C:N) ratios. Carbon and nitrogen concentrations in the new growth leaf tissue was measured at the beginning of the experiment and each subsequent time point for each treatment. Nutrient analyses were conducted at Unidade de Técnicas Instrumentais de Análise (University of Coruña, Spain) with an elemental analyser FlashEA112 (ThermoFinnigan). Underwater photos of shoots were analysed using ImageJ software (https://imagej.net). Maximum leaf length on each shoot in warm-edge transplant sites (cool-warm, centre-warm and warm-warm) were recorded for the initial (day 10) herbivore impact, T1, T2 and T3 time-points and related to transplant nutrient concentrations. Herbivore impact was estimated as the proportional change in length of the longest leaf relative to initial length at T0. Thermal stress Long term maximum temperatures were recorded as the average of annual maximum daily temperatures in each transplant site, averaged between years from 1981-2019. Maximum thermal anomalies were calculated as the difference between daily temperatures in a recipient site over the course of the experiment and the long-term maximum temperature in the source site for each corresponding population. ‘Heat stress’ and ‘recovery’ growth periods of the experiment were defined as T0 -T2 (July-October) and T2-T4 (November-June), respectively, corresponding to periods of positive and negative maximum thermal anomalies. Thermal anomalies experienced by the different transplant treatments were plotted using the ‘geom_flame’, function in the ‘HeatwavesR’ package (Schlegel & Smit 2018) of R (version 3.6.1, 2019) ., 1. The prevalence of local adaptation and phenotypic plasticity among populations is critical to accurately predicting when and where climate change impacts will occur. Currently, comparisons of thermal performance between populations are untested for most marine species or overlooked by models predicting the thermal sensitivity of species to extirpation. 2. Here we compared the ecological response and recovery of seagrass populations (Posidonia oceanica) to thermal stress throughout a year-long translocation experiment across a 2800 km gradient in ocean climate. Transplants in central and warm-edge locations experienced temperatures >29 ºC, representing thermal anomalies >5ºC above long-term maxima for cool-edge populations, 1.5ºC for central and <1ºC for warm-edge populations. 3. Cool, central and warm-edge populations differed in thermal performance when grown under common conditions, but patterns contrasted with expectations based on thermal geography. Cool-edge populations did not differ from warm-edge populations under common conditions and performed significantly better than central populations in growth and survival. 4. Our findings reveal that thermal performance does not necessarily reflect the thermal geography of a species. We demonstrate that warm-edge populations can be less sensitive to thermal stress than cooler, central populations suggesting that Mediterranean seagrasses have greater resilience to warming than current paradigms suggest., Australian Research Council, Award: DE200100900. Horizon 2020 Framework Programme, Award: 659246. Fundación BBVA., Peer reviewed

Proyecto: EC/H2020/659246
DOI: http://hdl.handle.net/10261/286137
Digital.CSIC. Repositorio Institucional del CSIC
oai:digital.csic.es:10261/286137
HANDLE: http://hdl.handle.net/10261/286137
Digital.CSIC. Repositorio Institucional del CSIC
oai:digital.csic.es:10261/286137
PMID: http://hdl.handle.net/10261/286137
Digital.CSIC. Repositorio Institucional del CSIC
oai:digital.csic.es:10261/286137
Ver en: http://hdl.handle.net/10261/286137
Digital.CSIC. Repositorio Institucional del CSIC
oai:digital.csic.es:10261/286137

Digital.CSIC. Repositorio Institucional del CSIC
oai:digital.csic.es:10261/329827
Dataset. 2022

DATASHEET_1_SEAGRASS THERMAL LIMITS AND VULNERABILITY TO FUTURE WARMING.PDF

  • Marbà, Núria
  • Jordá, Gabriel
  • Bennett, Scott
  • Duarte, Carlos M.
6 pages. -- Supplementary Figure 1. Current mean maximum summer temperature (average 𝑇!"# """""" for the period 1980-2005) across potential seagrass distribution. -- Supplementary Figure 2. Difference between current mean maximum summer temperature ( 𝑇!"# """""" ) and the Tlimit as a function of latitude. Negative and positive latitude values for southern and northern hemispheres, respectively. -- Supplementary Figure 3. Uncertainty associated to the time (in years) for mean maximum summer temperature to reach seagrass upper thermal limit (Tlim) at the warming rates projected under the RCP8.5 scenario around potential seagrass sites. -- Supplementary Figure 4. Time (in years) for mean maximum summer temperature to reach the upper thermal limits (Tlim) of temperate and tropical affinity seagrass flora at the warming rates projected under the RCP8.5 scenario around potential seagrass sites in the Mediterranean Sea and Queensland (Australia) coastal areas. -- Supplementary Figure 5. The time (in years) to reach Tlimit at the warming rates predicted under the RCP4.5 scenario around potential seagrass sites. -- Supplementary Figure 6. Time (in years) for mean maximum summer temperature to reach the upper thermal limits (Tlim) of temperate and tropical affinity seagrass flora at the warming rates projected under the RCP4.5 scenario around potential seagrass sites in the Mediterranean Sea and Queensland (Australia) coastal areas., Seagrasses have experienced major losses globally mostly attributed to human impacts. Recently they are also associated with marine heat waves. The paucity of information on seagrass mortality thermal thresholds prevents the assessment of the risk of seagrass loss under marine heat waves. We conducted a synthesis of reported empirically- or experimentally-determined seagrass upper thermal limits (Tlimit) and tested the hypothesis that they increase with increasing local annual temperature. We found that Tlimit increases 0.42± 0.07°C per°C increase in in situ annual temperature (R2 = 0.52). By combining modelled seagrass Tlimit across global coastal areas with current and projected thermal regimes derived from an ocean reanalysis and global climate models (GCMs), we assessed the proximity of extant seagrass meadows to their Tlimit and the time required for Tlimit to be met under high (RCP8.5) and moderate (RCP4.5) emission scenarios of greenhouse gases. Seagrass meadows worldwide showed a modal difference of 5°C between present Tmax and seagrass Tlimit. This difference was lower than 3°C at the southern Red Sea, the Arabian Gulf, the Gulf of Mexico, revealing these are the areas most in risk of warming-derived seagrass die-off, and up to 24°C at high latitude regions. Seagrasses could meet their Tlimit regularly in summer within 50-60 years or 100 years under, respectively, RCP8.5 or RCP4.5 scenarios for the areas most at risk, to more than 200 years for the Arctic under both scenarios. This study shows that implementation of the goals under the Paris Agreement would safeguard much of global seagrass from heat-derived mass mortality and identifies regions where actions to remove local anthropogenic stresses would be particularly relevant to meet the Target 10 of the Aichi Targets of the Convention of the Biological Diversity., Peer reviewed

Proyecto: //
DOI: http://hdl.handle.net/10261/329827
Digital.CSIC. Repositorio Institucional del CSIC
oai:digital.csic.es:10261/329827
HANDLE: http://hdl.handle.net/10261/329827
Digital.CSIC. Repositorio Institucional del CSIC
oai:digital.csic.es:10261/329827
PMID: http://hdl.handle.net/10261/329827
Digital.CSIC. Repositorio Institucional del CSIC
oai:digital.csic.es:10261/329827
Ver en: http://hdl.handle.net/10261/329827
Digital.CSIC. Repositorio Institucional del CSIC
oai:digital.csic.es:10261/329827

Buscador avanzado