Trehalose metabolism and signaling

被引:496
作者
Paul, Matthew J. [1 ]
Primavesi, Lucia F. [1 ]
Jhurreea, Deveraj [1 ]
Zhang, Yuhua [1 ]
机构
[1] Rothamsted Res, Ctr Crop Genet Improvement, Harpenden AL5 2JQ, Herts, England
基金
英国生物技术与生命科学研究理事会;
关键词
trehalose; 6-phosphate; nonreducing disaccharide; sugar signal; carbohydrate;
D O I
10.1146/annurev.arplant.59.032607.092945
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Trehalose metabolism and signaling is an area of emerging significance. In less than a decade our views on the importance of trehalose metabolism and its role in plants have gone through something of a revolution. An obscure curiosity has become an indispensable regulatory system. Mutant and transgenic plants of trehalose synthesis display wide-ranging and unprecedented phenotypes for the perturbation of a metabolic pathway. Molecular physiology and genomics have provided a glimpse of trehalose biology that had not been possible with conventional techniques, largely because the products of the synthetic pathway, trehalose 6-phosphate (T6P) and trehalose, are in trace abundance and difficult to measure in most plants. A consensus is emerging that T6P plays a central role in the coordination of metabolism with development. The discovery of trehalose metabolism has been one of the most exciting developments in plant metabolism and plant science in recent years. The field is fast moving and this review highlights the most recent insights.
引用
收藏
页码:417 / 441
页数:25
相关论文
共 112 条
[1]   Sugar and ABA responsiveness of a minimal RBCS light-responsive unit is mediated by direct binding of ABI4 [J].
Acevedo-Hernández, GJ ;
León, P ;
Herrera-Estrella, LR .
PLANT JOURNAL, 2005, 43 (04) :506-519
[2]   The α,α-(1→1) linkage of trehalose is key to anhydrobiotic preservation [J].
Albertorio, Fernando ;
Chapa, Vanessa A. ;
Chen, Xin ;
Diaz, Arnaldo J. ;
Cremer, Paul S. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2007, 129 (34) :10567-10574
[3]   Transformation of tobacco with an Arabidopsis thaliana gene involved in trehalose biosynthesis increases tolerance to several abiotic stresses [J].
Almeida, AM ;
Villalobos, E ;
Araújo, SS ;
Leyman, B ;
Van Dijck, P ;
Alfaro-Cardoso, L ;
Fevereiro, PS ;
Torné, JM ;
Santos, DM .
EUPHYTICA, 2005, 146 (1-2) :165-176
[4]   Responses to water withdrawal of tobacco plants genetically engineered with the AtTPS1 gene:: a special reference to photosynthetic parameters [J].
Almeida, Andre M. ;
Silva, Anabela B. ;
Araujo, Susana S. ;
Cardoso, Luis A. ;
Santos, Dulce M. ;
Torne, Jose M. ;
Silva, Jorge M. ;
Paul, Matthew J. ;
Fevereiro, Pedro S. .
EUPHYTICA, 2007, 154 (1-2) :113-126
[5]  
Anselmino O, 1913, BER DTSCH CHEM GES, V23, P326
[6]   Physiological roles of trehalose in bacteria and yeasts:: a comparative analysis [J].
Argüelles, JC .
ARCHIVES OF MICROBIOLOGY, 2000, 174 (04) :217-224
[7]   The Arabidopsis trehalose-6-P synthase AtTPS1 gene is a regulator of glucose, abscisic acid, and stress signaling [J].
Avonce, N ;
Leyman, B ;
Mascorro-Gallardo, JO ;
Van Dijck, P ;
Thevelein, JM ;
Iturriaga, G .
PLANT PHYSIOLOGY, 2004, 136 (03) :3649-3659
[8]   Insights on the evolution of trehalose biosynthesis [J].
Avonce, Nelson ;
Mendoza-Vargas, Alfredo ;
Morett, Enrique ;
Iturriaga, Gabriel .
BMC EVOLUTIONARY BIOLOGY, 2006, 6 (1)
[9]   A spatiotemporal analysis of enzymatic activities associated with carbon metabolism in wild-type and mutant embryos of Arabidopsis using in situ histochemistry [J].
Baud, S ;
Graham, IA .
PLANT JOURNAL, 2006, 46 (01) :155-169
[10]   Composition and functional analysis of the Saccharomyces cerevisiae trehalose synthase complex [J].
Bell, W ;
Sun, WN ;
Hohmann, S ;
Wera, S ;
Reinders, A ;
De Virgilio, C ;
Wiemken, A ;
Thevelein, JM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (50) :33311-33319