Enrichment in specific soluble sugars of two Eucalyptus cell-suspension cultures by various treatments enhances their frost tolerance via a noncolligative mechanism

被引:56
作者
Travert, S [1 ]
Valerio, L [1 ]
Fouraste, I [1 ]
Boudet, AM [1 ]
Teulieres, C [1 ]
机构
[1] UNIV TOULOUSE 3,CTR BIOL & PHYSIOL VEGETALES,CNRS,UNITE MIXTE RECH 5546,F-31062 TOULOUSE,FRANCE
关键词
D O I
10.1104/pp.114.4.1433
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
A cell-suspension culture obtained from the hybrid Eucalyptus gunnii/Eucalyptus globulus was hardened by exposure to lower temperatures, whereas in the same conditions cells from a hybrid with a more frost-sensitive genotype, Eucalyptus cypellocarpa/ Eucalyptus globulus, were not able to acclimate. During the cold exposure the resistant cells accumulated soluble sugars, in particular fructose and sucrose, with a limited increase in cell osmolality. In contrast, the cell suspension that was unable to acclimate did not accumulate soluble sugars in response to the same cold treatment. To an extent similar to that induced after a cold acclimation, frost-hardiness of the cells increased after a 14-h incubation with specific soluble sugars such as sucrose, raffinose, fructose, and mannitol. Such hardening was also observed for long-term cultures in mannitol-enriched medium. This cryoprotective effect of sugars without exposure to lower temperatures was observed in both the resistant and the sensitive genotypes. Mannitol was one of the most efficient carbohydrates for the cryoprotection of eucalyptus. The best hardiness (a 2.7-fold increase in relative freezing tolerance) was obtained for the resistant cells by the cumulative effect of cold-induced acclimation and mannitol treatment. This positive effect of certain sugars on eucalyptus Greeting tolerance was not colligative, since it was independent of osmolality and total sugar content.
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页码:1433 / 1442
页数:10
相关论文
共 35 条
[1]   COLD-ACCLIMATION IN EUCALYPT HYBRIDS [J].
ALMEIDA, MH ;
CHAVES, MM ;
SILVA, JC .
TREE PHYSIOLOGY, 1994, 14 (7-9) :921-932
[2]   MODES OF INTERACTION OF CRYOPROTECTANTS WITH MEMBRANE PHOSPHOLIPIDS DURING FREEZING [J].
ANCHORDOGUY, TJ ;
RUDOLPH, AS ;
CARPENTER, JF ;
CROWE, JH .
CRYOBIOLOGY, 1987, 24 (04) :324-331
[3]  
[Anonymous], STRESS RESPONSES PLA
[4]   ULTRASTRUCTURAL AND PROTEIN-CHANGES IN CELL-SUSPENSION CULTURES OF PEACH ASSOCIATED WITH LOW TEMPERATURE-INDUCED COLD-ACCLIMATION AND ABSCISIC-ACID TREATMENT [J].
ARORA, R ;
WISNIEWSKI, ME .
PLANT CELL TISSUE AND ORGAN CULTURE, 1995, 40 (01) :17-24
[5]  
CADIEUX C, 1988, PLANT PHYSIOL BIOCH, V26, P313
[6]   RAFFINOSE SYNTHASE AND GALACTINOL SYNTHASE IN DEVELOPING SEEDS AND LEAVES OF LEGUMES [J].
CASTILLO, EM ;
DELUMEN, BO ;
REYES, PS ;
DELUMEN, HZ .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1990, 38 (02) :351-355
[7]   STABILIZATION OF DRY PHOSPHOLIPID-BILAYERS AND PROTEINS BY SUGARS [J].
CROWE, JH ;
CROWE, LM ;
CARPENTER, JF ;
WISTROM, CA .
BIOCHEMICAL JOURNAL, 1987, 242 (01) :1-10
[8]  
ELDRIDGE K, 1993, EUCALYPTUS DOMESTICA, P17
[9]   WATER RELATIONS AND LOW-TEMPERATURE ACCLIMATION FOR CACTUS SPECIES VARYING IN FREEZING TOLERANCE [J].
GOLDSTEIN, G ;
NOBEL, PS .
PLANT PHYSIOLOGY, 1994, 104 (02) :675-681
[10]   RESPONSES OF PLANTS TO LOW, NON-FREEZING TEMPERATURES - PROTEINS, METABOLISM, AND ACCLIMATION [J].
GRAHAM, D ;
PATTERSON, BD .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1982, 33 :347-372