Seasonal photosynthetic responses of European oaks to drought and elevated daytime temperature

Plant Biol (Stuttg). 2013 Jan:15 Suppl 1:169-76. doi: 10.1111/j.1438-8677.2012.00625.x. Epub 2012 Jul 9.

Abstract

Oaks are commonly considered as drought- and heat-tolerant trees that might benefit from a warmer and drier climate. Their tolerance to drought has been frequently studied in the past, whereas studies dealing with elevated temperature or its combination with drought are very limited in number. In this study we investigated seasonal photosynthetic patterns in three European oak species (Quercus robur, Q. petraea, Q. pubescens) exposed in lysimeter-based open-top chambers (OTC) to elevated daytime temperature, drought and their combination. Stomatal and non-stomatal traits of photosynthesis were followed over an entire growing season and related to changes in daytime temperature, soil moisture and pre-dawn leaf water potential (Ψ(PD) ). Elevated daytime temperature enhanced net photosynthesis (P(N) ) in a season-dependent manner, with higher mid-summer rates than in controls exposed to ambient temperature. Drought imposed in early and mid-summer reduced the soil moisture content and caused a gradual decline in Ψ(PD) , stomatal conductance (g(S) ) and P(N) . Drought effects on Ψ(PD) and P(N) were exacerbated when drought was combined with elevated daytime temperature. In general, P(N) tended to be more affected by low soil moisture content or low Ψ(PD) in Q. robur than in Q. petraea and Q. pubescens. Non-stomatal limitations may have contributed to the drought-induced decline of P(N) in Q. robur, as indicated by a down-regulation of PSII photochemistry (F(V) /F(M) ) and decreased chlorophyll content. Taken together, our findings show that European oaks may benefit from elevated temperature, but detrimental effects can be expected when elevated temperature occurs simultaneously with drought.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adaptation, Physiological*
  • Chlorophyll / metabolism
  • Climate
  • Down-Regulation
  • Droughts*
  • Global Warming
  • Hot Temperature*
  • Photosynthesis / physiology*
  • Photosystem II Protein Complex / physiology
  • Plant Leaves
  • Plant Stomata
  • Quercus / metabolism
  • Quercus / physiology*
  • Seasons*
  • Soil
  • Species Specificity
  • Stress, Physiological*
  • Water

Substances

  • Photosystem II Protein Complex
  • Soil
  • Water
  • Chlorophyll