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1 Paek KY, "biochemical and morphological characteristics of vitrified shoots regenerated in vitro" 151-162, 1991
2 Olmos E, "Ultrastructural difference of hyperhydric and normal leaves from regenerated carnation plants" 75 : 91-101, 1998
3 Yeung EC, "The use of histology in the study of plant tissue culture systems - some practical comments" 35 : 137-143, 1999
4 Olmos E, "The subcellular localization of peroxidase and the implication of oxidative stress in hyperhydrated leaves of regenerated carnation plants" 130 : 97-105, 1997
5 Gribble K, "The influence of relative humidity on vitrification growth and morphology of Gypsophila paniculata L" 27 : 179-188, 1999
6 Chen J, "The effect of ancymidol on hyperhydricity starch and antioxidant enzymatic activities in liquid-cultured Narcissus" 20 : 22-27, 2001
7 Ridolfi M,, "Responses to water stress in an ABA-unresponsive hybrid poplar (Populus koreana X trichocarpa cv. Peace" 135 : 31-40, 1997
8 Mayor ML, "Reduction of hyperhydricity in sunflower tissue culture" 72 : 99-103, 2003
9 Ueno K,, "Reduced hyperhydricity and enhanced growth of tissue culture-generated raspberry (Rubus sp.) clonal lines by Pseudomonas sp. isolated from oregano" 33 : 441-445, 1998
10 Cohen D, "Reconsideration of the term vitrification as used in micropropagation" 135-140, 1992
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24 Marga F, "Agar fractions could protect apple shoots cultured in liquid media against hyperhydrity" 49 : 1-5, 1997
25 Miguens FC, "A scanning electron microscope study of normal and vitrified leaves from Datura insignis plantlets cultured in vitro" 32 : 109-113, 1993
26 Murashige T, "A revised medium for rapid growth and bioassays with tobacco tissue culture" 15 : 473-497, 1962