首页> 美国卫生研究院文献>Plant Physiology >Tonoplast Na+/H+ Antiport Activity and Its Energization by the Vacuolar H+-ATPase in the Halophytic Plant Mesembryanthemum crystallinum L.
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Tonoplast Na+/H+ Antiport Activity and Its Energization by the Vacuolar H+-ATPase in the Halophytic Plant Mesembryanthemum crystallinum L.

机译:盐生植物膜藻L.液泡膜Na + / H +的反转运活性及其通过液泡H + -ATPase的增强。

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摘要

Tonoplast vesicles were isolated from leaf mesophyll tissue of the inducible Crassulacean acid metabolism plant Mesembryanthemum crystallinum to investigate the mechanism of vacuolar Na+ accumulation in this halophilic species. In 8-week-old plants exposed to 200 mM NaCl for 2 weeks, tonoplast H+-ATPase activity was approximately doubled compared with control plants of the same age, as determined by rates of both ATP hydrolysis and ATP-dependent H+ transport. Evidence was also obtained for the presence of an electroneutral Na+/H+ antiporter at the tonoplast that is constitutively expressed, since extravesicular Na+ was able to dissipate a pre-existing transmembrane pH gradient. Initial rates of H+ efflux showed saturation kinetics with respect to extravesicular Na+ concentration and were 2.1-fold higher from vesicles of salt-treated plants compared with the controls. Na+-dependent H+ efflux also showed a high selectivity for Na+ over K+, was insensitive to the transmembrane electrical potential difference, and was more than 50% inhibited by 200 [mu]M N-amidino-3,5-diamino-6-chloropyrazinecarboxamide hydrochloride. The close correlation between increased Na+/H+ antiport and H+-ATPase activities in response to salt treatment suggests that accumulation of the very high concentrations of vacuolar Na+ found in M. crystallinum is energized by the H+ electrochemical gradient across the tonoplast.
机译:从可诱导的十字绣果酸代谢植物Mesembryanthemum crystallinum的叶肉叶组织中分离出液泡膜囊泡,以研究该嗜盐菌中液泡Na +积累的机制。在8周龄的植物中,暴露于200 mM NaCl中2周,与相同年龄的对照植物相比,液泡膜H + -ATPase活性大约增加了一倍,这由ATP水解和ATP依赖的H +转运速率确定。还获得了在液泡膜上本构表达的电中性Na + / H +反转运蛋白的存在的证据,因为囊外Na +能够消散预先存在的跨膜pH梯度。相对于囊外Na +浓度,H +外流的初始速率表现出饱和动力学,并且与对照相比,盐处理过的植物的囊泡高出2.1倍。依赖于Na +的H +外排还显示出对Na +的选择性高于对K +,对跨膜电位差不敏感,并且被200μMN-ami基-3,5-二氨基-6-氯吡嗪甲酰胺抑制了50%以上盐酸盐。 Na + / H +反向转运的增加与响应盐处理的H + -ATPase活性之间的密切相关性表明,在结晶支原体中发现的液泡状Na +的非常高浓度的积累是由跨液泡膜的H +电化学梯度激发的。

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