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References
Abu-Zanat MMW (2005) Voluntary intake and digestibility of saltbush by sheep. Asian Aust J
Anim Sci 18:214-220
Al-Jaber NAA, Mujahid TG, Al-Hazmi HMG (1992) Secondary metabolites of chenopodiaceace
species. J Chem Scoc Pak 14:76-83
Awaad AS, Maitland DJ, Donia AERM, Alqasoumi SI, Soliman GA (2012) Novel flavonoids with
antioxidant activity from a Chenopodiaceous plant. Pharmaceutical Biol 50:99-104
Bakhtiuary Z (2011) Herbal Medicines in Diabetes. IJDO 3:88-95
Barrett-Lennard EG (2002) Restoration of saline land through revegetation. Agric Water Manag
53:213-226
Belkheiri O, Mulas M (2011) The effects of salt stress on growth, water relations and ion accumu-
lation in two halophyte Atriplex species. Environ Exp Bot (in press). http://dx.doi.org/10.1016/j
Ben Hassine A, Ghanem ME, Bouzid S, Lutts S (2008) An inland and a coastal population of the
Mediterranean xero-halophyte species Atriplex halimus L. differ in their ability to accumulate
proline and glycinebetaine in response to salinity and water stress. J Exp Bot 59:1315-1326
Ben Salem H, Nefzaoui A, El-Mastouri A, Ben Salem L (2005) Nutritive value, behavior, and
growth of Barbarine lambs fed on oldman saltbush (  Atriplex nummularia L .) and supplemented
or not with barley grains or spineless cactus (  Opuntia ficus - indica F. inermis ) pads. Small
Rumin Res 59:229-237
Ben Salem H, Norman HC, Nefzaoui A, Mayberry DE, Pearce KL, Revell DK (2010) Potential
use of oldman saltbush (  Atriplex nummularia Lindl.) in sheep and goat feeding. Small Rumin
Res 91:13-28
Benhammou N, Fawzia AB, Tatjana KP (2009) Antioxidant activity of methanolic extracts and
some bioactive compounds of Atriplex halimus . Comptes Rendus Chimie 12:1259-1266
Benzarti M, Ben Rejeb K, Debez A, Messedi D, Abdelly C (2012) Photosynthetic activity and leaf
antioxidative responses of Atriplex portulacoides subjected to extreme salinity. Acta Physiol
Plant. doi:1007/s11738-012-0963-5
Blumwald E, Aharon GS, Apse MP (2000) Sodium transport in plant cells. Biochim Biophys Acta
1465:140-151
Boughalleb N, Trabelsi L, Harzallah-Skhiri F (2009) Antifungal activity from polar and non-polar
extracts of some Chenopodiaceae wild species growing in Tunisia. Nat Prod Res 23:988-997
Brown JJ, Glen EP, Fitzsimmons KM, Smith S (1999) Halophytes for the treatment of saline aqua-
culture effluent. Aquaculture 175:255-268
Bylka W (2004) A new acylated flavonol diglycosides from Atriplex littoralis . Acta Physiol Plant
24:393-398
Bylka W, Stobiecki M, Franski R (2001) Sulphated flavonoid glycosides from leaves of Atriplex
hortensis . Acta Physiol Plant 23:285-290
Byrne M, Hankinson M, Sampson JF, Stankowski S (2008) Microsatellite markers isolated from a
polyploidy saltbush, Atriplex nummularia Lindl. (Chenopodiaceae). Mol Ecol Resour 8:1426-
1428
Cambrollé J, Mancilla-Leytón JM, Muñoz-Vallés S, Luque T, Figueroa ME (2012a) Tolerance
and accumulation of copper in the salt-marsh shrub Halimione portulacoides . Mar Pollut Bull
64:721-728
Cambrollé J, Mancilla-Leytón JM, Muñoz-Vallés S, Luque T, Figueroa ME (2012b). Zinc tolerance
and accumulation in the salt-marsh shrub Halimione portulacoides . Chemosphere 86:867-874
Capua CJ, Hopson NP, Malcolm MGS, Johnston GR, KimL GB, Lee CM, Booth GM (2010).
Cytotoxicity of Atriplex confertifolia . J Toxicol 1-7. doi:10.1155/2010/976548
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