A vacuolar H+-pyrophosphatase differential activation and energy coupling integrate the responses of weeds and crops to drought stress

被引:7
|
作者
Venancio, Josimara Barcelos [1 ,2 ]
Catunda, Michelle Guedes [3 ]
Ogliari, Juarez [4 ]
Hottz Rima, Janaina Aparecida [1 ,2 ]
Okorokova-Facanha, Anna Lvovna [5 ]
Okorokov, Lev Alexandrovitich [5 ]
Facanha, Arnoldo Rocha [1 ,2 ]
机构
[1] Univ Estadual Norte Fluminense, Ctr Biociencias & Biotecnol, Lab Biol Celular & Tecidual, Campos Dos Goytacazes, RJ, Brazil
[2] Univ Estadual Norte Fluminense, Nucleo Desenvolvimento Insumos Biol Agr NUDIBA, Campos Dos Goytacazes, RJ, Brazil
[3] Inst Fed Fluminense, Macae, RJ, Brazil
[4] Inst Fed Fluminense, Bom Jesus Do Itabapoana, RJ, Brazil
[5] Univ Estadual Norte Fluminense, Ctr Biociencias & Biotecnol, Lab Fisiol & Bioquim Microorganismos, Campos Dos Goytacazes, RJ, Brazil
来源
关键词
Membrane-bound pyrophosphatase; V-type ATPase; Cytoplasmic pyrophosphate; Metabolic energy; Electrochemical gradient; Phosphate pool dynamics; ARABIDOPSIS-THALIANA; TONOPLAST VESICLES; TRANSLOCATING PYROPHOSPHATASE; HETEROLOGOUS EXPRESSION; SALT TOLERANCE; ATPASE; GENE; OVEREXPRESSION; IMPROVES; GROWTH;
D O I
10.1016/j.bbagen.2013.12.019
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
Background: Cyperus rotundus L is a C4 weed of large vegetative and reproductive vigor endowed with competitive advantages over most crop species mainly under adverse environmental conditions. Vacuole functions are critical for the mechanisms of drought resistance, and here the modulation of the primary system of vacuolar ion transport is investigated during a transient water stress imposed to this weed and to C4 crop species (Zea mays L). Methods: The vacuolar H+ pumps, the H+-ATPase and H+-PPiase, expression, activities and the energy coupling were spectrophotometrically investigated as key elements in the differential drought-resistance mechanisms developed by weeds and crops. Results: In C rotundus tonoplasts, ATP hydrolysis was more sensitive to drought than its coupled H+ transport, which was in turn at least 3-folds faster than that mediated by the H+-PPiase. Its PP; hydrolysis was only slightly affected by severe water deficit, contrasting with the disruption induced in the PPi-dependent H+-gradient. This effect was antagonized by plant rehydration as the H+-PPiase activity was highly stimulated, reassuming a coupled PPrdriven H+ pumping. Maize tonoplasts exhibited 2-4 times lower hydrolytic activities than that of C. rotundus, but were able to overactivate specifically PP-dependent H+ pumping in response to stress relief, resulting in an enhanced H+-pumps coupling efficiency. Conclusion: These results together with immunoanalysis revealed profiles consistent with pre- and post-translational changes occurring on the tonoplastli+-pumps, which differ between weeds and crops upon water deficit. General significance: The evidences highlight an unusual modulation of the H+-PPiase energy coupling as a key biochemical change related to environmental stresses adaptive capacity of plants. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:1987 / 1992
页数:6
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