Ectopic overexpression of the cell wall invertase gene CIN1 leads to dehydration avoidance in tomato

被引:65
作者
Albacete, Alfonso [1 ,2 ]
Cantero-Navarro, Elena [1 ]
Grosskinsky, Dominik K. [2 ,3 ]
Arias, Cintia L. [4 ]
Encarnacion Balibrea, Maria [1 ]
Bru, Roque [5 ]
Fragner, Lena [6 ]
Ghanem, Michel E. [1 ]
de la Cruz Gonzalez, Maria [7 ]
Hernandez, Jose A. [8 ]
Martinez-Andujar, Cristina [1 ]
van der Graaff, Eric [2 ,3 ]
Weckwerth, Wolfram [6 ]
Zellnig, Guenther [2 ]
Perez-Alfocea, Francisco [1 ]
Roitsch, Thomas [2 ,3 ,9 ]
机构
[1] CSIC, Dept Plant Nutr, CEBAS, Murcia 30100, Spain
[2] Graz Univ, Inst Plant Sci, Dept Plant Physiol, A-8010 Graz, Austria
[3] Univ Copenhagen, Dept Plant & Environm Sci, Copenhagen Plant Sci Ctr, DK-2630 Taastrup, Denmark
[4] Univ Nacl Rosario, Ctr Estudios Fotosintet & Bioquim, RA-2000 Rosario, Santa Fe, Argentina
[5] Univ Alicante, Dept Agroquim & Bioquim, Fac Ciencias, E-03080 Alicante, Spain
[6] Univ Vienna, Dept Mol Syst Biol, Fac Life Sci, A-1090 Vienna, Austria
[7] Univ Seville, CSIC, Inst Bioquim Vegetal & Fotosintesis, Seville 41092, Spain
[8] CSIC, Dept Fruit Breeding, CEBAS, Murcia 30100, Spain
[9] Czech Globe AS CR, Global Change Res Ctr, Vvi, CZ-66424 Drasov, Czech Republic
基金
奥地利科学基金会;
关键词
Cell wall invertase; cytokinins; drought stress; ethylene; source-sink relationships; tomato; SOURCE-SINK RELATIONS; EXTRACELLULAR INVERTASE; VACUOLAR INVERTASE; DROUGHT TOLERANCE; METABOLIC-REGULATION; SUCROSE METABOLISM; CHENOPODIUM-RUBRUM; PLANT INVERTASES; HORMONAL CHANGES; STRESS-RESPONSE;
D O I
10.1093/jxb/eru448
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Drought stress conditions modify source-sink relations, thereby influencing plant growth, adaptive responses, and consequently crop yield. Invertases are key metabolic enzymes regulating sink activity through the hydrolytic cleavage of sucrose into hexose monomers, thus playing a crucial role in plant growth and development. However, the physiological role of invertases during adaptation to abiotic stress conditions is not yet fully understood. Here it is shown that plant adaptation to drought stress can be markedly improved in tomato (Solanum lycopersicum L.) by overexpression of the cell wall invertase (cwInv) gene CIN1 from Chenopodium rubrum. CIN1 overexpression limited stomatal conductance under normal watering regimes, leading to reduced water consumption during the drought period, while photosynthetic activity was maintained. This caused a strong increase in water use efficiency (up to 50%), markedly improving water stress adaptation through an efficient physiological strategy of dehydration avoidance. Drought stress strongly reduced cwInv activity and induced its proteinaceous inhibitor in the leaves of the wild-type plants. However, the CIN1-overexpressing plants registered 3- to 6-fold higher cwInv activity in all analysed conditions. Surprisingly, the enhanced invertase activity did not result in increased hexose concentrations due to the activation of the metabolic carbohydrate fluxes, as reflected by the maintenance of the activity of key enzymes of primary metabolism and increased levels of sugar-phosphate intermediates under water deprivation. The induced sink metabolism in the leaves explained the maintenance of photosynthetic activity, delayed senescence, and increased source activity under drought stress. Moreover, CIN1 plants also presented a better control of production of reactive oxygen species and sustained membrane protection. Those metabolic changes conferred by CIN1 overexpression were accompanied by increases in the concentrations of the senescence-delaying hormone trans-zeatin and decreases in the senescence-inducing ethylene precursor 1-aminocyclopropane-1-carboxylic acid (ACC) in the leaves. Thus, cwInv critically functions at the integration point of metabolic, hormonal, and stress signals, providing a novel strategy to overcome drought-induced limitations to crop yield, without negatively affecting plant fitness under optimal growth conditions.
引用
收藏
页码:863 / 878
页数:16
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