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2008 | 56 | 4 |

Tytuł artykułu

Nutrient stoichiometric relations and biogeochemical niche in coexisting plants species: effect of simulated climate change

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Here we define a “biogeochemical niche” characterized by the species position in the multivariate space generated by its content not only of macronutrients like N, P or K, but also of micronutrients such as Mo, Mg and Ca, and trace toxic elements such as Pb and As. We then hypothesize that the flexibility of the species “biogeochemical niche” will influence the quality of plant tissue, which may have implications for herbivores, and will affect the species capacity to respond to disturbances and climate change and to adapt to the new climate conditions. We show with a simple multivariate procedure, a principal component analysis (PCA), first, that there is a strong differentiation in the total and relative (stoichiometry) content of the different elements in coexisting plant species, and, second, that there is species-specific plasticity in the response of this elemental composition to experimental climate change. The concentrations of foliar macro and micronutrients, as well as trace elements were measured in several tree species (Quercus ilex L., Phillyrea latifolia L. and Arbutus unedo L. in a Mediterranean broad leaf forest (Prades Mts) and in shrub species (Erica multiflora L., Globularia alypum L. and Dorycnium pentaphyllum Scop.) in a Mediterranean shrubland (Garraf Mts) in control plants and in plants grown in experimental drought and warming plots. The climate conditions were monitored during the period 1999–2005. During this period, in the Prades experiment the drought plots had on average a soil moisture content 9% lower than the control plots, whereas in the Garraf experiment the drought treatment led to a mean reduction in soil moisture of 21% and the warming treatment to 0.9ºC rise. The species with greater changes in biogeochemical niche under increased warming or drought, Arbutus unedo, Erica multiflora and Globularia alypum, were those that were also more affected in growth, photosynthetic capacity and other eco-physiological traits. The species differentiations indicate a strong biogeochemical niche, and that the changes in biogeochemical niche are probably an underlying factor in community structure shifts.

Wydawca

-

Rocznik

Tom

56

Numer

4

Opis fizyczny

p.613-622,fig.,ref.

Twórcy

autor
  • Universitat Autonoma de Barcelona, 08193 Bellaterra, Catalonia, Spain
autor
autor
autor

Bibliografia

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  • Llorens L., Peñuelas J., Estiarte M., Bruna P. 2004 – Contrasting growth changes in two dominant species of a mediterranean shrubland submitted to experimental drought and warming – Ann. Bot. 94: 843–853.
  • Ogaya R., Peñuelas J., Martinez-Vilalta J., Mangiron M. 2003 – Effect of drought on diameter increment of Quercus ilex, Phillyrea latifolia, and Arbutus unedo in a holm oak forest of NE Spain – Forest Ecol. Manag. 180: 175–184.
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  • Peñuelas J., Prieto P., Beber C., Cesaraccio C., De Angelis P., de Dato G., Emmett B.A., Estiarte M., Garadnai J., Gorissen A., Lang E.K., Kröel-Dulay G., Llorens L., Pellizzaro G., Riis-Nielsen T., Schmid I.K., Sirca C., Sowerby A., Spano D., Tietema A. 2007 – Response of plant species richness and primary productivity in shrublands along a north-south gradient in Europe to seven years of experimental warming and drought. Reductions in primary productivity in the heat and drought year of 2003 – Global Change Biol. 13: 2563–2581.
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  • Sardans J., Peñuelas J. 2007a – Drought changes the P and K accumulation patterns in an evergreen oak Quercus ilex Mediterranean forest – Funct. Ecol. 21: 191–201.
  • Sardans J., Peñuelas J. 2007b – Drought changes the dynamics of trace element accumulation in a Mediterranean Quercus ilex forest – Env. Poll. 147: 567–583.
  • Sardans J., Peñuelas J., Ogaya R. 2008a – Drought’s impact on Ca, Fe, Mg, Mo and S concentration and accumulation patterns in the plants and soil of a Mediterranean evergreen Quercus ilex forest – Biogeochemistry 87: 49–69.
  • Sardans J., Peñuelas J., Estiarte M. 2008b – Warming and drought change trace element bioaccumulation patterns in a Mediterranean shrubland – Chemosphere 70: 874–885.
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Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-e6c802fb-574c-4cd6-aeb8-b619a1ffbefd
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