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[170] Hoekstra FA, Golovina EA, Buitink J. Mechanisms of plant desiccation tolerance.
Trends Plant Science. 2001; 6: 431-438.
[171] Browne J, Tunnacliffe A, Burnell A. Plant desiccation gene found in a nematode. Na‐
ture. 2002; 416: 36.
[172] Górecki RJ, Piotrowicz-Cieslak AI, Lahuta LB, Obendorf RL. Soluble carbohydrates
in desiccation tolerance of yellow lupine seeds during maturation and germination.
Seed Science Research. 1997; 7: 107-115.
[173] Corbineau F, Picard MA, Fougereux JA, Ladonne F, Côme D. Effects of dehydration
conditions on desiccation tolerance of developing pea seeds as related to oligosac‐
charide content and cell membrane properties. Seed Science Research. 2000; 10: 329-
339.
[174] Black M, Corbineau F, Gee H, Côme D. Water content, raffinose, and dehydrins in
the induction of desiccation tolerance in immature wheat embryos. Plant Physiology.
1999; 120: 463-471.
[175] Blackman SA, Obendorf RL, Leopold AC. Desiccation tolerance in developing soy‐
bean seeds: the role of stress proteins. Physiologia Plantarum. 1995; 93: 630-638.
[176] Finch-Savage WE, Pramanik SK, Bewley JD. The expression of dehydrin proteins in
desiccation-sensitive (recalcitrant) seeds of temperate trees. Planta. 1994; 193: 478-
485.
[177] Parida AK, Das B, Salt tolerance and salinity effects on plants. Ecotoxicol Environ‐
ment Safety. 2005; 60: 324-349.
[178] Sofo A, Dichio B, Xiloyannis C, Masia A. Lipoxygenase activity and proline accumu‐
lation in leaves and roots of olive tree in response to drought stress. Physiologia
Plantarum. 2004; 121: 58-65.
[179] Tattini M, Gucci R, Romani A, Baldi A, Everard JD. Changes in non structural carbo‐
hydrates in olive (Olea europaea) leaves during root zone salinity stress. Physiolo‐
gyogia Plantarum. 1996; 98: (1): 117-124.
[180] Lotfi, N, Vahdati K, Kholdebarin B, Amiri R. Soluble sugars and proline accumula‐
tion play a role as effective indices for drought tolerance screening in Persian walnut
(Juglans regia L.) during germination. Fruits. 2010a; 65: 97-112.
[181] Mapelli S, Brambilla I, Bertani A. Free amino acids in walnut kernels and young
seedlings. Tree Physiology. 2001; 21: 1299-1302.
[182] Martin-Tanguy J. Metabolism and function of polyamines in plants: recent develop‐
ment (new approaches). Plant Growth Regulation. 2001; 34: 135-48.
[183] Meloni DA, Oliva MA, Martinez CA, Cambraia J. Photosynthesis and activity of su‐
peroxide dismutase, peroxidase and glutathione reductase in cotton under salt stress.
Environment and Experimental Botany. 2003; 49: 69-76.
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