首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Electrostatic changes in root plasma membrane of glycophytic and halophytic species of tomato
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Electrostatic changes in root plasma membrane of glycophytic and halophytic species of tomato

机译:番茄糖生和盐生植物根系质膜的静电变化

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We investigated the effect of salt stress on the electrostatic properties of plasma membrane vesicles obtained from both the glycophytic, cultivated tomato, Lycopersicon escedentum (Mill, cvs. Heinz-1350 and VF 36) and the halophytic, wild species, L. cheesmanii (Hook, C.H. Mull, ecotype 1401) grown under control and saline conditions to determine if there exists a difference in the modulation of the membrane surface charge between the glycophytic and halophytic tomato. In agreement with earlier findings, fluorescence titration of vesicles indicated that salinity stress resulted in the modulation of the plasma membrane surface potential to more positive values in the glycophytic tomato species. However, a much smaller shift was measured in the halophytic tomato. Membrane surface potentials (psi(0)) of -20.0 and -7.6 my were calculated for control and salt-stressed vesicles from the glycophytic Heinz-1350 cultivar, respectively, and -22.0 and -3.3 mv, respectively, from the glycophytic VF 36 cultivar. For the halophytic species, Lc-1401, we measured membrane surface potentials (psi(0)) of -24.8 and -19.7 my for control and salt-stressed vesicles, respectively. BTP-Cl- stimulation of ApH was greater in vesicles isolated from control roots obtained from the wild Lc-1401 as compared with the cultivated Heinz-1350. However, the reverse was true in vesicles isolated from salt-stressed roots. Cl- stimulated proton pumping to a greater degree in vesicles from Heinz-1350 than Lc-1401. Both K+ or Na+ (added as K+- or Na+-Mes along with 100 mM BTP-Cl-) stimulated H+-pumping activity in plasma membrane vesicles from both Heinz-1350 and Lc-1401. In most cases, K+ stimulation of H+-pumping activity was higher in vesicles isolated from salt-stressed than from non-stressed plants. (c) 2005 Elsevier Ireland Ltd. All rights reserved.
机译:我们研究了盐胁迫对糖基化栽培番茄番茄(Lycopersicon escedentum(Mill,cvs。Heinz-1350和VF 36)和盐生,野生种L. cheesmanii(胡克)获得的质膜囊泡静电特性的影响。 (CH Mull,生态型1401)在对照和盐水条件下生长,以确定在糖生番茄和盐生番茄之间膜表面电荷的调节是否存在差异。与先前的发现相一致,囊泡的荧光滴定表明盐度胁迫导致质膜西红柿物种中质膜表面电位被调节为更正的值。但是,在盐生番茄中测得的位移要小得多。分别从糖性Heinz-1350品种的对照囊泡和盐胁迫小泡计算得出膜表面电位(psi(0))为-20.0和-7.6 my,而糖性VF 36分别计算出膜表面势(psi(0))和-22.0和-3.3 mv。品种对于盐生植物Lc-1401,我们测得的对照囊泡和盐胁迫囊泡的膜表面电位(psi(0))分别为-24.8和-19.7 my。与从培养的Heinz-1350相比,在从野生Lc-1401获得的对照根中分离的囊泡中,BTP-Cl-对ApH的刺激更大。然而,从盐胁迫的根中分离出来的囊泡则相反。与Lc-1401相比,Heinz-1350中Cl刺激质子泵出的程度更高。 K +或Na +(作为K +-或Na + -Mes与100 mM BTP-Cl-一起添加)都刺激了Heinz-1350和Lc-1401质膜囊泡中的H +泵浦活性。在大多数情况下,从盐胁迫下分离出的囊泡中的K +对H +泵浦活性的刺激要高于非胁迫下的囊泡。 (c)2005 Elsevier Ireland Ltd.保留所有权利。

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