OeFAD8, OeLIP and OeOSM expression and activity in cold-acclimation of Olea europaea, a perennial dicot without winter-dormancy

被引:17
作者
D'Angeli, Simone [1 ]
Matteucci, Maya [1 ]
Fattorini, Laura [1 ]
Gismondi, Angelo [2 ]
Ludovici, Matteo [1 ]
Canini, Antonella [2 ]
Altamura, Maria Maddalena [1 ]
机构
[1] Univ Roma La Sapienza, Dipartimento Biol Ambientale, P Le A Moro 5, I-00185 Rome, Italy
[2] Univ Roma Tor Vergata, Dipartimento Biol, Via Ric Sci 1, I-00133 Rome, Italy
关键词
Cuticle; Fatty acid desaturase (FAD8); Linolenic acid; LIP transcription factor; Lipidome; Osmotin; GENE-EXPRESSION; OMEGA-3-FATTY-ACID DESATURASE; ARABIDOPSIS-THALIANA; TRANSCRIPTION FACTOR; FATTY-ACIDS; FREEZING TOLERANCE; STRESS TOLERANCE; ABSCISIC-ACID; CELL-DEATH; TEMPERATURE;
D O I
10.1007/s00425-016-2490-x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Cold-acclimation genes in woody dicots without winter-dormancy, e.g., olive-tree, need investigation. Positive relationships between OeFAD8, OeOSM , and OeLIP19 and olive-tree cold-acclimation exist, and couple with increased lipid unsaturation and cutinisation. Olive-tree is a woody species with no winter-dormancy and low frost-tolerance. However, cold-tolerant genotypes were empirically selected, highlighting that cold-acclimation might be acquired. Proteins needed for olive-tree cold-acclimation are unknown, even if roles for osmotin (OeOSM) as leaf cryoprotectant, and seed lipid-transfer protein for endosperm cutinisation under cold, were demonstrated. In other species, FAD8, coding a desaturase producing alpha-linolenic acid, is activated by temperature-lowering, concomitantly with bZIP-LIP19 genes. The research was focussed on finding OeLIP19 gene(s) in olive-tree genome, and analyze it/their expression, and that of OeFAD8 and OeOSM, in drupes and leaves under different cold-conditions/developmental stages/genotypes, in comparison with changes in unsaturated lipids and cell wall cutinisation. Cold-induced cytosolic calcium transients always occurred in leaves/drupes of some genotypes, e.g., Moraiolo, but ceased in others, e.g., Canino, at specific drupe stages/cold-treatments, suggesting cold-acclimation acquisition only in the latter genotypes. Canino and Moraiolo were selected for further analyses. Cold-acclimation in Canino was confirmed by an electrolyte leakage from leaf/drupe membranes highly reduced in comparison with Moraiolo. Strong increases in fruit-epicarp/leaf-epidermis cutinisation characterized cold-acclimated Canino, and positively coupled with OeOSM expression, and immunolocalization of the coded protein. OeFAD8 expression increased with cold-acclimation, as the production of alpha-linolenic acid, and related compounds. An OeLIP19 gene was isolated. Its levels changed with a trend similar to OeFAD8. All together, results sustain a positive relationship between OeFAD8, OeOSM and OeLIP19 expression in olive-tree cold-acclimation. The parallel changes in unsaturated lipids and cutinisation concur to suggest orchestrated roles of the coded proteins in the process.
引用
收藏
页码:1279 / 1296
页数:18
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