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Friday, 15 July 2016

Physiological response to drought in seedlings of Pistacia lentiscus (mastic tree)

Author

  • A. R. Vasques 
  • G. Pinto
  • M. C. Dias
  • C. M. Correia
  • J. M. Moutinho-Pereira
  • V. R. Vallejo
  • C. Santos
  • J. J. Keizer

Abstract

Drought is often an important constraint on plant regeneration in the Mediterranean. Pistacia lentiscus is of particular interest in restoration actions in fire-prone areas. This study addressed the current knowledge gap on the physiological response of this species to drought during its initial development. We hypothesized that the seedlings would have a high resistance to drought. In addition, we expected that seedlings from two sources with contrasting climate conditions would perform distinctly under drought. Seeds were collected from two populations in north and south Portugal. Seedlings were subjected to a progressively lower osmotic potential during 25 days, through increasing PEG concentration in the hydroponic solution. The physiological response of the seedlings was assessed by measuring gas exchange and chlorophyll fluorescence after 15 and 25 days of drought exposure, when the osmotic potential was −2.47 and −5.17 MPa, respectively. Shoot growth, net CO2 assimilation rate, stomatal conductance and transpiration were significantly reduced under drought conditions, whilst intrinsic water-use efficiency (IWUE) remained unaffected. This response partially agreed with the known strategy of P. lentiscus to cope with drought, typically maintaining high IWUE, however the observed reduction in stomatal conductance was not as pronounced as expected. Drought induced a decrease in leaf pigments that could be linked to photo-protective mechanisms. Seed source did not have a significant effect on drought response. P. lentiscus showed a high resistance to drought, which clearly supported its use in restoration actions in the Mediterranean, but these findings require further testing under field conditions.

References

  1. Bacelar EA, Moutinho-Pereira JM, Gonçalves B, Ferreira H, Correia CM (2007) Changes in growth, gas exchange, xylem hydraulic properties and water use efficiency of three olive cultivars under contrasting water availability regimes. Environ Exp Bot 60:183–192CrossRef
  2. Bacelar E, Moutinho-Pereira JM, Gonçalves B, Brito C, Gomes-Laranjo J, Ferreira H, Correia CM (2012) Water use strategies of plants under drought conditions. In: Aroca Ricardo (ed) Plant responses to drought stress: from morphological to molecular features. Springer, Berlin, pp 145–170CrossRef
  3. Baeza MJ, Santana VM, Pausas JG, Vallejo VR (2011) Successional trends in standing dead biomass in Mediterranean basin species. J Veg Sci 22:467–474CrossRef
  4. Björkman O, Demmig-Adams B (1994) Regulation of photosynthetic light energy capture, conversion, and dissipation in leaves of higher plants. In: Schulze E-D, Caldwell MM (eds) Ecophysiology of Photosynthesis. Springer, Berlin, p 1747
  5. Correia O, Barradas MD (2000) Ecophysiological differences between male and female plants of Pistacia lentiscusL. Plant Ecol 149:131–142CrossRef
  6. Cortina J, Green JJ, Baddeley JA, Watson CA (2008) Root morphology and water transport of Pistacia lentiscusseedlings under contrasting water supply: a test of the pipe stem theory. Environ Exp Bot 62:343–350CrossRef
  7. Filella I, Lusia J, Piñol J, Peñuelas J (1998) Pistacia lentiscus and Quercus ilex saplings in severe drought and high temperature conditions. Environ Exp Bot 39:213–220CrossRef
  8. Flexas J, Gulías J, Jonasson S, Medrano H, Mus M (2001) Seasonal patterns and control of gas exchange in local populations of the Mediterranean evergreen shrub Pistacia lentiscus L. Acta Oecol 22:33–43CrossRef
  9. Galmés J, Abadía A, Cifre J, Medrano H, Flexas J (2007) Photoprotection processes under water stress and recovery in Mediterranean plants with different growth forms and leaf habits. Physiol Plant 130:495–510CrossRef
  10. García-Fayos P (2001) Bases ecológicas para la recolección, almacenamiento y germinación de semillas de especies de uso forestal en la Comunidad Valenciana. Generalitat Valenciana, Valencia (Book ID: 6170)
  11. García-Fayos P, Verdú M (1998) Soil seed bank factors controlling germination and establishment of a Mediterranean shrub: Pistacia lentiscus L. Acta Oecol 19:357–366CrossRef
  12. Gratani L, Varone L (2004) Adaptive photosynthetic strategies of the Mediterranean maquis species according to their origin. Photosynthetica 42:551–558CrossRef
  13. Gúlias J, Flexas J, Abadía A, Madrano H (2002) Photosynthetic responses to water deficit in six Mediterranean sclerophyll species: possible factors explaining the declining distribution of Rhamnus ludovici-salvatoris, an endemic Balearic species. Tree Physiol 22:687–697
  14. IPCC (2013) Working group I: the physical basis of climate change. Cambridge University Press, Cambridge
  15. IPMA (Portuguese Institute of the Sea and Atmosphere). https://​www.​ipma.​pt/​pt/​oclima/​normais.​clima/​ (Last accessed Aug 2013)
  16. Jordano P (1989) Pre-dispersal biology of Pistacia lentiscus (Anacardiaceae): cumulative effects on seed removal by birds. Oikos 55:375–386CrossRef
  17. Keeley JE, Bond WJ, Bradstock RA, Pausas JG, Rundel PW (2012) Fire in Mediterranean ecosystems. Cambridge University Press, New York, p 515
  18. Kyparissis A, Petropoulou Y, Manetas Y (1995) Summer survival of leaves in a soft-leaved shrub (Phlomis fruticosaL., Labiatae) under Mediterranean field conditions: avoidance of photoinhibitory damage through decreased chlorophyll contents. J Exp Bot 46:1825–1831CrossRef
  19. Liodakis S, Kakardakis T (2008) Measuring the relative particle foliar combustibility of WUI forest species located near Athens. J Therm Anal Calorim 93:627–635CrossRef
  20. Maestre FT, Cortina J, Bautista S, Bellot J, Vallejo R (2003) Small-scale environmental heterogeneity and spatiotemporal dynamics of seedling establishment in a semiarid degraded ecosystem. Ecosystems 6:630–643CrossRef
  21. Maxwell K, Johnson GN (2000) Chlorophyll fluorescence—a practical guide. J Exp Bot 51:659–668CrossRefPubMed
  22. Michel BE, Kaufmann MR (1973) The osmotic potential of polyethylene glycol 6000. Plant Physiol 51:914–916CrossRefPubMedPubMedCentral
  23. Monteiro M, Santos C, Mann RM, Soares AM, Lopes T (2007) Evaluation of cadmium genotoxicity in Lactuca sativa L. using nuclear microsatellites. Environ Exp Bot 60:421–427CrossRef
  24. Moreno-Gutiérrez C, Dawson TE, Nicolás E, Querejeta JI (2012) Isotopes reveal contrasting water use strategies among coexisting plant species in a Mediterranean ecosystem. New Phytol 196:489–496CrossRefPubMed
  25. Moutinho-Pereira JM, Correia CM, Gonçalves B, Bacelar EL, Torres-Pereira JM (2004) Leaf gas-exchange and water relations of grapevines grown in three different conditions. Photosynthetica 42:81–86CrossRef
  26. Murata N, Takahashi S, Nishiyama Y, Allakhverdiev SI (2007) Photoinhibition of photosystem II under environmental stress. Biochim et Biophys Acta (BBA)-Bioenerg, 1767(6):414-421
  27. Osmond CB, Anderson JM, Ball MC, & Egerton JJG (1999) Compromising efficiency: the molecular ecology of light-resource utilization in plants. Physiol plant ecol. Blackwell Science Ltd, Oxford, 1–25.
  28. Paula S, Pausas JG (2008) Burning seeds: germinative response to heat treatments in relation to resprouting ability. J Ecol 96:543–552CrossRef
  29. Pausas J, Llovet J, Rodrigo A, Vallejo R (2008) Are wildfires a disaster in the Mediterranean basin? A review. Int J Wildland Fire 17:713–723CrossRef
  30. Santos C, Fragoeiro S, Phillips A (2005) Physiological response of grapevine cultivars and a rootstock to infection with Phaeoacremonium and Phaeomoniella isolates: an in vitro approach using plants and calluses. Sci Hortic 103:187–198CrossRef
  31. Sims DA, Gamon JÁ (2002) Relationships between leaf pigment content and spectral reflectance across a wide range of species, leaf structures and developmental stages. Remote Sens Environ 81:337–354CrossRef
  32. Tsakaldimi M, Ganatsas P (2001) Treatments improving seed germination of two Mediterranean sclerophyll species: Ceratonia siliqua and Pistacia lentiscus. In: Proceedings of the 3rd Balcan scientific conference, vol II, pp 119–127. ISBN: 954-90896-3-0
  33. Valladares F, Sánchez-Gómez D (2006) Ecophysiological traits associated with drought in Mediterranean tree seedlings: individual responses versus interspecific trends in eleven species. Plant Biol 8:688–697CrossRefPubMed
  34. Vallejo VR, Smanis A, Chirino E, Fuentes D, Valdecantos A, Vilagrosa A (2012) Perspectives in dryland restoration: approaches for climate change adaptation. New For 43:561–579CrossRef
  35. Vasques A, Chirino E, Vilagrosa A, Vallejo VR, Keizer JJ (2013) The role of seed provenance in the early development of Arbutus unedo seedlings under contrasting watering conditions. Environ Exp Bot 96:11–19CrossRef
  36. Vasques A, Vallejo VR, Santos C, Keizer JJ (2014) The role of cold storage and seed source in the germination of three Mediterranean shrub species with contrasting dormancy types. Ann For Sci. doi:10.​1007/​s13595-014-0395-z
  37. Verdú M, García-Fayos P (1998a) Female biased sex ratios in Pistacia lentiscus L. (Anacardiaceae). Plant Ecol 135:95–101CrossRef
  38. Verdú M, García-Fayos P (1998b) Ecological causes, function, and evolution of abortion and parthenocarpy in Pistacia lentiscus (Anacardiaceae). Can J Bot 76:134–141
  39. Verdú M, García-Fayos P (2000) The effect of deceptive fruits on predispersal seed predation by birds in Pistacia lentiscus. Plant Ecol 156(2):245–248
  40. Vilagrosa A, Morales F, Abadía A, Bellot J, Cochard H, Gil-Pelegrin E (2010) Are symplast tolerance to intense drought conditions and xylem vulnerability to cavitation coordinated? An integrated analysis of photosynthetic, hydraulic and leaf level processes in two Mediterranean drought-resistant species. Environ Exp Bot 69:233–242CrossRef
  41. Vilagrosa A, Hernández EI, Luis VC, Cochard H, Pausas JG (2014) Physiological differences explain the co-existence of different regeneration strategies in Mediterranean ecosystems. New Phytol 201:1277–1288CrossRefPubMed
  42. Zohary M (1952) A monographical study of the genus Pistacia. Palest J Bot Jerusalem Ser 5:187–228
  43. Zunzunegui M, Barradas MCD, Ain-Lhout F, Alvarez-Cansino L, Esquivias MP, Novo FG (2011) Seasonal physiological plasticity and recovery capacity after summer stress in Mediterranean scrub communities. Plant Ecol 212:127–142CrossRef

For further details log on website :
http://link.springer.com/article/10.1007/s11056-015-9497-1

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