275
Views
8
CrossRef citations to date
0
Altmetric
Research Article

Photosynthetic, anatomical and biochemical responses of olive tree (Olea europaea) cultivars under water stress

, , , &
Pages 740-746 | Received 07 Oct 2019, Accepted 01 Jun 2020, Published online: 18 Jun 2020

References

  • Araus JL, Amaro T, Casadesus J, Asbati A, Nachit MM. 1998. Relationships between ash content, carbon isotope discrimination and yield in durum wheat. Functional Plant Biol. 25(7):835–842.
  • Bacelar EA, Correia CM, Moutinho-Pereira JM, Goncalves BC, Lopes JM, Torres P. 2004. Sclerophylly and leaf anatomical traits of five field-grown olive cultivars growing under drought conditions. Tree Physiol. 24(2):233–239.
  • Barber J. 2009. Photosynthetic energy conversion: natural and artificial. Chem Soc Rev. 38(1):185–196.
  • Boussadia O, Mariem FB, Mechri B, Boussetta W, Braham M, El Hadj SB. 2008. Response to drought of two olive tree cultivars (cv Koroneki and Meski). Sci Hortic. 116(4):388–393.
  • Carlquist S. 1977. Ecological factors in wood evolution: a floristic approach. Am J Bot. 64(7):887–896.
  • Chartzoulakis K, Patakas A, Bosabalidis A. 1999. Changes in water relations, photosynthesis and leaf anatomy induced by intermittent drought in two olive cultivars. Env Exp Bot. 42(2):113–120.
  • Demming-Adams B. 1990. Carotenoids and photo protection in plants. A role for Xanthophyll zeaxanthin. Biochem Biophys Acta. 1020:1–24.
  • Deysson G. 1965. Eléments D’anatomie Des Plants Vasculaires. Société d’édition d’enseignement supérieur. Paris; p. 266.
  • Dixon RA, Paiva NL. 1995. Stress-induced phenylpropanoid metabolism. Plant Cell. 7(7):1085–1097.
  • Emam MM, Khattab HE, Helal NM, Deraz AE. 2014. Effect selenium and silicon on yield quality of rice plant grown under drought stress. Australian J Crop Sci. 8:596–605.
  • Ennajeh M, Mohamed A, Khemira H. 2009. Osmoregulation and osmoprotection in the leaf cells of two olive cultivars subjected to severe water deficit. Acta Physiol Plant. 31(4):711–721.
  • Ennajeh M, Tounekti T, Vadel AM, Khemira H, Cochard H. 2008. Water relations and drought-induced embolism in olive (Olea europaea) varieties 'Meski' and 'Chemlali' during severe drought. Tree Physiol. 28(6):971–976.
  • Ennajeh M, Vadel AM, Khemira H, Ben Mimoun M, Hellali R. 2006. Defense mechanisms against water deficit in two olive (Olea europaea L.) cultivars ‘Meski’ and ‘Chemlali. J Hort Sci Biotech. 81(1):99–104.
  • Fahn A. 1986. Structural and functional properties of trichomes of xeromorphic leaves. Ann Bot. 57(5):631–637.
  • Fernandez JE, Moreno F, Giron IF, Blasquez OM. 1997. Stomatal control of water use in olive tree leaves. Plant Soil. 190:179–192.
  • Giorio P, Sorrentino G, Andria R. 1999. Stomatal behaviour leaf water status and photosynthetic response in field-grown olive trees under water deficit. Env Exp Bot. 42(2):95–104.
  • Gomes MTG, Luz AC, Santos MR, Batitucci MCP, Silva DM, Falqueto AR. 2012. Drought tolerance of passion fruit plants assessed by the OJIP chlorophyll a fluorescence transience. Sci. Hort. 142:49–56.
  • Gonçalves ER, Ferreira VM, Silva JV, Endres L, Barbosa TP, Duarte WG. 2010. Trocas gasosas e fluorescência da clorofila a em variedades de cana-de-açúcar submetidas à deficiência hídrica. Rev Bras Eng Agríc Ambient. 14(4):378–386.
  • Grace C. 2005. Phenolics as antioxidants. In: N. Smirnoff (Ed.), Antioxidants and reactive oxygen species in plants. UK: Blackwell; p. 141–168.
  • Gregorová Z, Kováčik J, Klejdus B, Maglovski M, Kuna R, Hauptvogel P, Matušíková I. 2015. Drought-induced responses of physiology, metabolites, and PR proteins in Triticum aestivum. J Agric Food Chem. 63(37):8125–8133.
  • Kontogiorgis C, Hadjipavlou-Litina D. 2005. Synthesis and anti inflammatory activity of coumarin derivatives. J Med Chem. 48(20):6400–6408.
  • Lawlor DW, Cornic G. 2002. Photosynthetic carbon assimilation and associated metabolism in relation to water deficits in higher plants. Plant Cell Environ. 25(2):275–294.
  • Lichtenthaler HK, Buschmann C. 2001. Chlorophylls andcarotenoids–Measurement and characterization by UV-VIS. In: Lichtenthaler HK, editor. Current Protocols in Food Analyticial Chemistry (CPFA), (Supplement 1). New York: Wiley.
  • Lovisolo C, Schubert A. 1998. Effects of water stress on vessel size and xylem hydraulic conductivity in Vitis vinifera L. J Exp Bot. 49(321):693–700.
  • Marchi S, Tognetti R, Minnocci A, Borghi M, Sebastiani L. 2008. Variation in mesophyll anatomy and photosynthetic capacity during leaf development in a deciduous mesophyte fruit tree (Prunus persica) and an ever- green sclerophyllous Mediterranean shrub (Olea europaea L.). Trees. 22(4):559–571.
  • Martins JPR, Schimildt ER, Alexandre RS, Falqueto AR, Otoni WC. 2015. Chlorophyll a fluorescence and growth of Neoregelia concentrica (Bromeliaceae) during acclimatization in response to light levels. In Vitro Celldevbiol-Plant. 51(4):471–481.
  • Maxwell K, Johnson GN. 2000. Chlorophyll fluorescence – a practical guide. J Exp Bot. 51(345):659–668.
  • Mehta P, Allakhverdiev SI, Jajoo A. 2010. Characterization of photosystem II heterogeneity in response to high salt stress in wheat leaves (Triticum aestivum). Photosyn Res. 105(3):249–255.
  • Msallem M, Trigui A. 2002. Catalogue des variétés Autochtones et types locaux; Vol. 1, p. 159.
  • Nishiyama Y, Yamamoto H, Llakhverdiev SI, Inaba M, Yokota A, Murata N. 2001. Oxidative stress inhibits the repair of photodamage to the photosynthetic machinery. Embo J. 20(20):5587–5594.
  • Oukarroum A, Madidi SE, Schansker G, Strasser RJ. 2007. Probing the responses of barley cultivars (Hordeum vulgare L.) by chlorophyll a fluorescence OLKJIP under drought stress and re-watering. Environ Exp Bot. 60(3):438–446.
  • Perciva GC, Sheriffs CN. 2002. Identification of drought tolerant woody perennials using chlorophyll fluorescence. J Arbor. 28:215–223.
  • Singleton VL, Rossi J. 1965. Colorimetric of total phenolics with phosphomolybdic-phosphotungstic acid reagents. Am J Enol Viticule. 16:144.
  • Smirnoff N. 1993. The role of active oxygen in the response to water deficit and dessiccation. New Phytol. 125(1):27–58.
  • Souza RP, Machado EC, Silva JAB, Lagoa A, Silveira J. 2004. Photosynthetic gas exchange, chlorophyll fluorescence and some associated metabolic changes in cowpea (Vigna unguiculata) during water stress and recovery. Environ Exp Bot. 51(1):45–56.
  • Terral J-F, Mengual X. 1999. Reconstruction of Holocene climate in southern France and eastern Spain using quantitative anatomy of olive wood and archaeological charcoal. Palaeogeo.Palaeoclim. Palaeo. 153(1–4):71–92.
  • Tyree MT, Ewers FW. 1991. The hydraulic architecture of trees and other woody plants. New Phytol. 119(3):345–360.
  • Whatley FR, Tagawa K, Arnon DI. 1963. Separation of the light and dark reactions in electron transfer during photosynthesis. Proc Natl Acad Sci USA. 49:266–270.
  • Younis ME, El-Shahaby OA, Abo-Hamed SA, Ibrahim AH. 2000. Effects of water stress on growth, pigments and 14CO2 assimilation in three sorghum cultivars. J Agron Crop Sci. 185(2):73–82.
  • Zhishen J, Mengcheng T, Jianming W. 1999. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chem. 64(4):555–559.
  • Zushi K, Matsuzoe N. 2017. Using of chlorophyll a fluorescence OJIP transits for sensing salt stress in the leaves and fruits of tomato. Sci Hort. 219:216–221.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.