Characterization of Trehalose-6-Phosphate Synthase and Trehalose-6-Phosphate Phosphatase Genes of Tomato (Solanum lycopersicum L.) and Analysis of Their Differential Expression in Response to Temperature

被引:15
|
作者
Mollavali, Mohanna [1 ]
Boernke, Frederik [1 ,2 ]
机构
[1] Leibniz Inst Vegetable & Ornamental Crops IGZ, Plant Metab Grp, Theodor Echtermeyer Weg 1, D-14979 Grossbeeren, Germany
[2] Univ Potsdam, Inst Biochem & Biol, Campus Golm Haus 20,Karl Liebknecht Str 24-25, D-14476 Potsdam, Germany
关键词
trehalose metabolism; heat stress; Solanum lycopersicum; yeast complementation; ABIOTIC STRESS; TREHALOSE ACCUMULATION; ARABIDOPSIS-THALIANA; ENHANCED TOLERANCE; DROUGHT; METABOLISM; FUSION; FAMILY; GROWTH; 6-PHOSPHATE;
D O I
10.3390/ijms231911436
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In plants, the trehalose biosynthetic pathway plays key roles in the regulation of carbon allocation and stress adaptation. Engineering of the pathway holds great promise to increase the stress resilience of crop plants. The synthesis of trehalose proceeds by a two-step pathway in which a trehalose-phosphate synthase (TPS) uses UDP-glucose and glucose-6-phosphate to produce trehalose-6 phosphate (T6P) that is subsequently dephosphorylated by trehalose-6 phosphate phosphatase (TPP). While plants usually do not accumulate high amounts of trehalose, their genome encodes large families of putative trehalose biosynthesis genes, with many members lacking obvious enzymatic activity. Thus, the function of putative trehalose biosynthetic proteins in plants is only vaguely understood. To gain a deeper insight into the role of trehalose biosynthetic proteins in crops, we assessed the enzymatic activity of the TPS/TPP family from tomato (Solanum lycopersicum L.) and investigated their expression pattern in different tissues as well as in response to temperature shifts. From the 10 TPS isoforms tested, only the 2 proteins belonging to class I showed enzymatic activity, while all 5 TPP isoforms investigated were catalytically active. Most of the TPS/TPP family members showed the highest expression in mature leaves, and promoter-reporter gene studies suggest that the two class I TPS genes have largely overlapping expression patterns within the vasculature, with only subtle differences in expression in fruits and flowers. The majority of tomato TPS/TPP genes were induced by heat stress, and individual family members also responded to cold. This suggests that trehalose biosynthetic pathway genes could play an important role during temperature stress adaptation. In summary, our study represents a further step toward the exploitation of the TPS and TPP gene families for the improvement of tomato stress resistance.
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页数:17
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