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[148] Kirschbaum, M.U.F. Water stress in Eucalyptus pauciflora. Comparison of effects on
stomatal conductance with effects on the mesophyll capacity for photosynthesis and
investigation of a possible involvement of photoinhibition. Planta 1987; 171: 466-473.
[149] Ingle RA, Collett H, Cooper K, Takahashi Y, Farrant JM, Illing N. Chloroplast biogen‐
esis during rehydration of the resurrection plant Xerophyta humilis: parallels to the
etioplast-chloroplast transition. Plant Cell Environ. 2008; 31(12): 1813-24.
[150] Blum, A. and Ebercon, A. Cell membrane stability as a measure of drought and heat
tolerance in wheat. Crop Science 1981 21 (1): 43-47.
[151] Premachandra, G.S., H. Saneoka, K. Fujita and S. Ogata. leaf water relation, osmotic
adjustment, cell membrane stability, epicuticular wax load and growth as affected by
increasing water deficits in sorghum. J. Exp. Bot. 1992; 43: 1569-1576.
[152] Bandurska H. Does proline accumulated in leaves of water deficit stressed barley
plants confine cell membrane injury? I. Free proline accumulation and membrane in‐
jury index in drought and osmotic stressed plants. Acta Physiol. Plantarum. 2000; 22:
409-415.
[153] Sharp RE, LeNoble ME. ABA, ethylene and the control of shoot and root growth un‐
der water stress. Journal of Experimental Botany. 2002; 53: 33-37.
[154] Bengtson C., S. Larsson, C. Liljenberg. Effects of water stress on cuticular transpira‐
tion rate and amount and composition of epicuticular wax in seedlings of six oat va‐
rieties. Physiologia Plantarum 1978; 44 (4): 319-324.
[155] Islam MA, Du H, Ning J, Ye H, Xiong L. Characterization of Glossy1-homologous
genes in rice involved in leaf wax accumulation and drought resistance. Plant Mol
Biol. 2009; 70(4): 443-56.
[156] Jordan WR, Shouse PJ, Blum A, Miller FR, Monk RL. Environmental physiology of
sorghum. II. Epicuticular wax load and cuticular transpiration. Crop Sci 1984; 24:
168-173.
[157] Jefferson P.G., D.A. Johanson, M.D. Runbaugh, K.H. Asay. Water stress and genotyp‐
ic effects on epicuticular wax production of alfalfa and crested wheat grass in rela‐
tion to yield and excised leaf water loss rate. Can. J. Plant Sci., 1989; 69: 481-490.
[158] Yang J, Isabel Ordiz M, Jaworski JG, Beachy RN. Induced accumulation of cuticular
waxes enhances drought tolerance in Arabidopsis by changes in development of sto‐
mata. Plant Physiol Biochem. 2011; 49(12): 1448-55.
[159] Jackson RD, Idso SB, Reginato RJ, Pinter PJ. Canopy temperature as a crop water-
stress indicator. Water Resources Research 1981; 17: 1133-1138.
[160] Jones HG, Stoll M, Santos T, de Sousa C, Chaves MM, Grant OM. Use of infrared
thermography for monitoring stomatal closure in the field: application to grapevine.
Journal of Experimental Botany 2002; 53: 2249-2260.
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