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不同盐度诱导的与细胞质离子稳态相关的 H⁺-泵和 Na⁺/H⁺反向转运蛋白活性的变化,其与基因型和水稻细胞系的耐受水平有关。

Differential salinity-induced variations in the activity of H⁺-pumps and Na⁺/H⁺ antiporters that are involved in cytoplasm ion homeostasis as a function of genotype and tolerance level in rice cell lines.

机构信息

Department of Biologia Vegetal, Facultat de Biològiques, Universitat de València, c/Dr. Moliner 50, 46100 Burjassot, València, Spain.

出版信息

Plant Physiol Biochem. 2011 Dec;49(12):1399-409. doi: 10.1016/j.plaphy.2011.09.011. Epub 2011 Oct 1.

Abstract

The characterisation of cellular responses to salinity in staple crops is necessary for the reliable identification of physiological markers of salinity tolerance. Under saline conditions, variations in proton gradients that are generated by membrane-bound H⁺ pumps are crucial for maintaining cytoplasm homeostasis. We examined short (15 h) and longer term effects (4 days) of NaCl stress on the H⁺ pumping activities that are associated with the plasma membrane (P-ATPase) and the tonoplast (V-ATPase and V-PPase) in rice (Oryza sativa L.) callus lines that displayed different levels of NaCl tolerance and were established from two japonica rice cultivars. The applied stress conditions were based on those that were used in the induction of a stress-responsive polyubiquitin gene promoter (UBI1) in transgenic rice calli. The most remarkable effect of NaCl stress on H⁺ pumping was the rapid activation of tonoplast-bound pumps; this was particularly observed in cv. Bomba, in which the response of the P-ATPase was slower and showed a higher level of activity after 4 days of stress. The responses were cultivar-dependent; however, in general, a stronger activation occurred in the lines that had a higher tolerance (L-T) than in the less-tolerant (L-S) lines. Substrate hydrolysis was less affected than H⁺ pumping, and it yielded higher H⁺/substrate coupling ratios, which is indicative of an enhanced H⁺ pumping efficiency under saline conditions. The Na⁺/H⁺ antiport activity was generally limited to salt-stressed calli, and higher values and stronger activation of the tonoplast antiporter were observed in the L-T lines than in the L-S lines. The results that were obtained with the NaCl-stressed transgenic lines confirmed the close relationship between metabolic activity, H⁺ pumping and the induction of Na⁺/H⁺ exchange activities.

摘要

在主要作物中对盐度的细胞反应进行特征描述,对于可靠鉴定盐度耐受性的生理标记物是必要的。在盐胁迫条件下,由质膜(P-ATP 酶)和液泡膜(V-ATP 酶和 V-PP 酶)上的膜结合 H+泵产生的质子梯度变化对于维持细胞质稳态至关重要。我们研究了盐胁迫对不同耐盐性的水稻愈伤组织系(来自两个粳稻品种)中与质膜(P-ATP 酶)和液泡膜(V-ATP 酶和 V-PP 酶)相关的 H+泵活性的短期(15 h)和长期(4 天)影响。应用的胁迫条件基于在转基因水稻愈伤组织中诱导应激响应多泛素基因启动子(UBI1)中使用的条件。NaCl 胁迫对 H+泵的最显著影响是液泡结合泵的快速激活;在 Bomba 品种中观察到这种反应尤为明显,其中 P-ATP 酶的反应较慢,在应激 4 天后表现出更高的活性。反应依赖于品种;然而,一般来说,在具有更高耐受性(L-T)的系中比在耐受性较低(L-S)的系中发生更强的激活。与 H+泵相比,底物水解受影响较小,并且产生更高的 H+/底物偶联比,这表明在盐胁迫条件下 H+泵效率增强。Na+/H+反向转运活性通常仅限于盐胁迫愈伤组织,并且在 L-T 系中观察到更高的数值和更强的液泡反向转运体激活,而在 L-S 系中则较低。用 NaCl 胁迫的转基因系获得的结果证实了代谢活性、H+泵和 Na+/H+交换活性诱导之间的密切关系。

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