Edurne Martínez del Castillo
University of Zaragoza
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Edurne Martínez del Castillo.
Nature plants | 2015
Henri E. Cuny; Cyrille B. K. Rathgeber; David Frank; Patrick Fonti; Harri Mäkinen; Peter Prislan; Sergio Rossi; Edurne Martínez del Castillo; Filipe Campelo; Hanuš Vavrčík; Jesús Julio Camarero; Marina V. Bryukhanova; Tuula Jyske; Jožica Gričar; Vladimír Gryc; Martin de Luis; Joana Vieira; Katarina Čufar; Alexander V. Kirdyanov; Walter Oberhuber; Václav Treml; Jian-Guo Huang; Xiaoxia Li; Irene Swidrak; Annie Deslauriers; Eryuan Liang; Pekka Nöjd; Andreas Gruber; Cristina Nabais; Hubert Morin
Wood is the main terrestrial biotic reservoir for long-term carbon sequestration(1), and its formation in trees consumes around 15% of anthropogenic carbon dioxide emissions each year(2). However, the seasonal dynamics of woody biomass production cannot be quantified from eddy covariance or satellite observations. As such, our understanding of this key carbon cycle component, and its sensitivity to climate, remains limited. Here, we present high-resolution cellular based measurements of wood formation dynamics in three coniferous forest sites in northeastern France, performed over a period of 3 years. We show that stem woody biomass production lags behind stem-girth increase by over 1 month. We also analyse more general phenological observations of xylem tissue formation in Northern Hemisphere forests and find similar time lags in boreal, temperate, subalpine and Mediterranean forests. These time lags question the extension of the equivalence between stem size increase and woody biomass production to intra-annual time scales(3, 4, 5, 6). They also suggest that these two growth processes exhibit differential sensitivities to local environmental conditions. Indeed, in the well-watered French sites the seasonal dynamics of stem-girth increase matched the photoperiod cycle, whereas those of woody biomass production closely followed the seasonal course of temperature. We suggest that forecasted changes in the annual cycle of climatic factors(7) may shift the phase timing of stem size increase and woody biomass production in the future.
Frontiers in Plant Science | 2016
Edurne Martínez del Castillo; Luis Alberto Longares; Jožica Gričar; Peter Prislan; Eustaquio Gil-Pelegrín; Katarina Čufar; Martin de Luis
Wood formation in European beech (Fagus sylvatica L.) and Scots pine (Pinus sylvestris L.) was intra-annually monitored to examine plastic responses of the xylem phenology according to altitude in one of the southernmost areas of their distribution range, i.e., in the Moncayo Natural Park, Spain. The monitoring was done from 2011 to 2013 at 1180 and 1580 m a.s.l., corresponding to the lower and upper limits of European beech forest in this region. Microcores containing phloem, cambium and xylem were collected biweekly from twenty-four trees from the beginning of March to the end of November to assess the different phases of wood formation. The samples were prepared for light microscopy to observe the following phenological phases: onset and end of cell production, onset and end of secondary wall formation in xylem cells and onset of cell maturation. The temporal dynamics of wood formation widely differed among years, altitudes and tree species. For Fagus sylvatica, the onset of cambial activity varied between the first week of May and the third week of June. Cambial activity then slowed down and stopped in summer, resulting in a length of growing season of 48–75 days. In contrast, the growing season for P. sylvestris started earlier and cambium remained active in autumn, leading to a period of activity varying from 139-170 days. The intra-annual wood-formation pattern is site and species-specific. Comparison with other studies shows a clear latitudinal trend in the duration of wood formation, positive for Fagus sylvatica and negative for P. sylvestris.
Iawa Journal | 2016
Jožica Gričar; Klemen Novak; Martin de Luis; Katarina Čufar; Edurne Martínez del Castillo; Luis Alberto Longares; Peter Prislan
Annual periodicity of cambium production of xylem and phloem cells has rarely been compared in trees from different environments. We compared the structure of cambium and the youngest xylem and phloem increments in four tree species, Fagus sylvatica, Picea abies, Pinus sylvestris and Pinus halepensis, from nine temperate and Mediterranean sites in Slovenia and Spain. In Picea abies, Pinus sylvestris and Fagus sylvatica from temperate locations in Slovenia, xylem and phloem growth ring boundaries could be identified. In Fagus sylvatica growing at two elevations on Moncayo mountain, Spain, phloem increment consisted of only early phloem. In Pinus sylvestris from the same two sites, growth ring boundaries were not as clear as in temperate Slovenian sites. In some cases we could identify phloem growth ring boundaries but in others it was very doubtful, which could be explained by collapse of the outermost early phloem sieve cells. In Pinus halepensis from all sites, we could only distinguish between collapsed and non-collapsed phloem, while phloem rings could not be identified. Widths of the youngest phloem and xylem annual increments could only be compared when phloem increments could be clearly defined, as with Picea abies, Fagus sylvatica and Pinus sylvestris from temperate sites. The visibility of the growth ring boundary in phloem was not related to the width of annual radial growth. The correlation between xylem and phloem ring widths was high, but moderate between the number of dormant cambial cells and xylem ring and phloem ring widths. Based on the structure of the youngest phloem increments, we concluded that there is no typical annual periodicity in cambial production of phloem cells in trees from certain Mediterranean sites. This may be due to continuous yearlong cell production and the absence of true cambium dormancy, at least on the phloem side, under mild winter conditions.
Frontiers in Plant Science | 2016
Peter Prislan; Jožica Gričar; Martin de Luis; Klemen Novak; Edurne Martínez del Castillo; Uwe Schmitt; Gerald Koch; Jasna Štrus; Polona Mrak; Magda Tušek Žnidarič; Katarina Čufar
To understand better the adaptation strategies of intra-annual radial growth in Pinus halepensis and Pinus sylvestris to local environmental conditions, we examined the seasonal rhythm of cambial activity and cell differentiation at tissue and cellular levels. Two contrasting sites differing in temperature and amount of precipitation were selected for each species, one typical for their growth and the other represented border climatic conditions, where the two species coexisted. Mature P. halepensis trees from Mediterranean (Spain) and sub-Mediterranean (Slovenia) sites, and P. sylvestris from sub-Mediterranean (Slovenia) and temperate (Slovenia) sites were selected. Repeated sampling was performed throughout the year and samples were prepared for examination with light and transmission electron microscopes. We hypothesized that cambial rhythm in trees growing at the sub-Mediterranean site where the two species co-exist will be similar as at typical sites for their growth. Cambium in P. halepensis at the Mediterranean site was active throughout the year and was never truly dormant, whereas at the sub-Mediterranean site it appeared to be dormant during the winter months. In contrast, cambium in P. sylvestris was clearly dormant at both sub-Mediterranean and temperate sites, although the dormant period seemed to be significantly longer at the temperate site. Thus, the hypothesis was only partly confirmed. Different cambial and cell differentiation rhythms of the two species at the site where both species co-exist and typical sites for their growth indicate their high but different adaptation strategies in terms of adjustment of radial growth to environmental heterogeneity, crucial for long-term tree performance and survival.
Global Change Biology | 2018
Antonio Gazol; Jesús Julio Camarero; Sergio M. Vicente-Serrano; Raúl Sánchez-Salguero; Emilia Gutiérrez; Martin de Luis; Gabriel Sangüesa-Barreda; Klemen Novak; Vicente Rozas; Pedro Antonio Tíscar; Juan Carlos Linares; Natalia Martín-Hernández; Edurne Martínez del Castillo; Montserrat Ribas; Ignacio García-González; Fernando Silla; Álvaro Camisón; Mar Génova; José Miguel Olano; Luis Alberto Longares; Andrea Hevia; Miquel Tomas-Burguera; J. Diego Galván
Forecasted increase drought frequency and severity may drive worldwide declines in forest productivity. Species-level responses to a drier world are likely to be influenced by their functional traits. Here, we analyse forest resilience to drought using an extensive network of tree-ring width data and satellite imagery. We compiled proxies of forest growth and productivity (TRWi, absolutely dated ring-width indices; NDVI, Normalized Difference Vegetation Index) for 11 tree species and 502 forests in Spain corresponding to Mediterranean, temperate, and continental biomes. Four different components of forest resilience to drought were calculated based on TRWi and NDVI data before, during, and after four major droughts (1986, 1994-1995, 1999, and 2005), and pointed out that TRWi data were more sensitive metrics of forest resilience to drought than NDVI data. Resilience was related to both drought severity and forest composition. Evergreen gymnosperms dominating semi-arid Mediterranean forests showed the lowest resistance to drought, but higher recovery than deciduous angiosperms dominating humid temperate forests. Moreover, semi-arid gymnosperm forests presented a negative temporal trend in the resistance to drought, but this pattern was absent in continental and temperate forests. Although gymnosperms in dry Mediterranean forests showed a faster recovery after drought, their recovery potential could be constrained if droughts become more frequent. Conversely, angiosperms and gymnosperms inhabiting temperate and continental sites might have problems to recover after more intense droughts since they resist drought but are less able to recover afterwards.
Applied Geography | 2015
Edurne Martínez del Castillo; Alberto García-Martin; Luis Alberto Longares Aladrén; Martin de Luis
Trees-structure and Function | 2014
Katarina Čufar; Michael Grabner; András Morgós; Edurne Martínez del Castillo; Maks Merela; Martin de Luis
Forests | 2018
Edurne Martínez del Castillo; Ernesto Tejedor; Roberto Serrano-Notivoli; Klemen Novak; Miguel Ángel Saz; Luis Alberto Longares; Martin de Luis
Forests | 2018
Marina Peña-Gallardo; Sergio M. Vicente-Serrano; Jesús Julio Camarero; Antonio Gazol; Raúl Sánchez-Salguero; Fernando Domínguez-Castro; Ahmed El Kenawy; Santiago Beguería-Portugés; Emilia Gutiérrez; Martin de Luis; Gabriel Sangüesa-Barreda; Klemen Novak; Vicente Rozas; Pedro Antonio Tíscar; Juan Carlos Linares; Edurne Martínez del Castillo; Montserrat Ribas Matamoros; Ignacio García-González; Fernando Silla; Álvaro Camisón; Mar Génova; José Miguel Olano; Luis Alberto Longares; Andrea Hevia; Juan Diego Galván
Dendrochronologia | 2018
Edurne Martínez del Castillo; Peter Prislan; Jožica Gričar; Vladimír Gryc; Maks Merela; Kyriaki Giagli; Martin de Luis; Hanuš Vavrčík; Katarina Čufar