25.06.2013 Views

Effet de l'aridité sur la biochimie et la physiologie d'argania spinosa

Effet de l'aridité sur la biochimie et la physiologie d'argania spinosa

Effet de l'aridité sur la biochimie et la physiologie d'argania spinosa

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

15. Sawadogo M., Zombre G., Balma D., 2006. Expression <strong>de</strong> différents écotypes <strong>de</strong> gombo<br />

(Abelmoschus esculentus L.) au déficit hydrique intervenant pendant <strong>la</strong> boutonnisation <strong>et</strong> <strong>la</strong> floraison,<br />

Biotechnol. Agron. Soc. Environ., 43–54<br />

16. Kaya C., Tuna A. L., Alves A. A. C., 2006. Gibberellic acid improves water <strong>de</strong>ficit tolerance in<br />

maize p<strong>la</strong>nts. Acta physiologiae p<strong>la</strong>ntarum. Vol. 28. No. 4. 331-337.<br />

17. Degl’Innocenti E., Guidi L., Stevanovic B., Navari F., 2008. CO2 fixation and chlorophyll a<br />

fluorescence in leaves of Ramonda serbica during a <strong>de</strong>hydration–rehydration cycle. Journal of P<strong>la</strong>nt<br />

Physiology 165,723-733<br />

18. Collinson S., C<strong>la</strong>wson E., Azam-Ali S., B<strong>la</strong>ck C., 1997. Effects of moisture <strong>de</strong>ficits on the water<br />

re<strong>la</strong>tions of bambara groudnut (Vigna subterranean L. Verdc.). J Exp Bo ; 48 : 877-84.<br />

19. Tahrouch S., Andary C., Rapior S., Mondolot L., Garga<strong>de</strong>nnec A. <strong>et</strong> Fruchier A., 2000.<br />

Polyphenol investigation of Argania <strong>spinosa</strong> (Sapotaceae) en<strong>de</strong>mic tree from Morocco. Acta Botanica<br />

Gallica, 147, (3), 225-232.<br />

20. Lichtenthaler H.K., 1987. Chlorophylls and carotenoids: pigments of photosynth<strong>et</strong>ic<br />

biomemranes. M<strong>et</strong>hods Enzymol ; 148:350-82.<br />

21. Weatherley P.E., 1950. Studies in the water re<strong>la</strong>tion cotton p<strong>la</strong>nts: the field mea<strong>sur</strong>ement of<br />

water <strong>de</strong>ficit in leaves. New Phytol. 49, 81–87.<br />

22. Andary C., 1990. Documentation chimique <strong>et</strong> pharmaceutique pour l’AMM du MERALOPS<br />

comprimés. Laboratoire Allergan-Dulcis, Monaco, France.<br />

23. Neu R., 1956. Ein neues Reagenz zum Nachweis und zur Unterescheidung von F<strong>la</strong>vonen im<br />

Papierchromatogramm. Die Naturwissenschaften, 43,82.<br />

25. Hariri E.B., Salle G. <strong>et</strong> Andry C., 1991. In volvement of f<strong>la</strong>vonoïds in the resistance of two<br />

popu<strong>la</strong>r cultivars mistl<strong>et</strong>oe (Viscum album L.). Protop<strong>la</strong>sma 162, 20-26.<br />

25. Li C., Juntti<strong>la</strong> O., Ernstsen A., Heino P., Palva E.T., 2003. Photoperiodic control of growth,<br />

cold acclimation and dormancy <strong>de</strong>velopment in silver birch (B<strong>et</strong>u<strong>la</strong> pendu<strong>la</strong>) ecotypes. Physiol. P<strong>la</strong>nt.<br />

117: 206-212.<br />

26. Li, C., Juntti<strong>la</strong>, O., Heino, P., Palva, E.T., 2003. Different responses of northern and southern<br />

ecotypes of B<strong>et</strong>u<strong>la</strong> pendu<strong>la</strong> to exogenous ABA application. Tree Physiol. 23: 481-487.<br />

27. Den<strong>de</strong>n M., Bous<strong>la</strong>ma M., Slimi H., BouaouinaT., 2005. Action du traj<strong>et</strong> foliaire <strong>de</strong> diffusion <strong>de</strong><br />

l’eau <strong>et</strong> <strong>de</strong> l’épaisseur <strong>de</strong> <strong>la</strong> cuticule <strong>sur</strong> <strong>la</strong> transpiration. Sécheresse ; 16 : 125-9.<br />

28. Den<strong>de</strong>n M., Ben Tina B., H<strong>la</strong>oua W., 2008. Caractéristiques morphologiques, anatomiques <strong>et</strong><br />

physiologiques <strong>de</strong> tolérance à <strong>la</strong> sécheresse du pêcher, du poirier <strong>et</strong> du pommier. Cahiers Agricultures<br />

vol. 17, n°5.<br />

29. Li C., Viherä-Aarnio A., Puhakainen T., Juntti<strong>la</strong> O., Heino P., Palva E.T., 2003. Ecotype<strong>de</strong>pen<strong>de</strong>nt<br />

control of growth, dormancy and freezing tolerance un<strong>de</strong>r seasonal changes in B<strong>et</strong>u<strong>la</strong><br />

pendu<strong>la</strong> Roth. Trees 17: 127-132.<br />

30. Lu Y., Duan B., Li C., 2007. Physiological responses to drought and enhanced UV-B radiation in<br />

two contrasting Picea asperata popu<strong>la</strong>tions. Can. J. Forest. Res. 37: 1253-1262.<br />

31. Toumi I., Gargouri M., Nouairi I., Moschou P.N., Ben Salem-Fnayou A., Mliki A., Zarrouk<br />

M., Ghorbel A., 2008. Water stress induced changes in the leaf lipid composition of four grapevine<br />

genotypes with different drought tolerance. Biol. P<strong>la</strong>nt. 52: 161-164.<br />

32. Huang X., Xiao X., Zhang S., Korpe<strong>la</strong>inen H., Li C., 2009. Leaf morphological and physiological<br />

responses to drought and sha<strong>de</strong> in two Populus cathayana popo<strong>la</strong>tions. Biologia p<strong>la</strong>ntarum. 53 (3) :<br />

588-592.<br />

Actes du Premier Congrès International <strong>de</strong> l’ Arganier, Agadir 15 - 17 Décembre 2011<br />

307

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!