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NaCl regulation of plasma membrane H(+)-ATPase gene expression in a glycophyte and a halophyte.

机译:NaCl调节糖原和盐生植物质膜H(+)-ATPase基因表达。

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摘要

NaCl regulation of plasma membrane H(+)-ATPase gene expression in the glycophyte tobacco (Nicotiana tabacum L. var Wisconsin 38) and the halophyte Atriplex nummularia L. was evaluated by comparison of organ-specific mRNA abundance using homologous cDNA probes encoding the ATPases of the respective plants. Accumulation of mRNA was induced by NaCl in fully expanded leaves and in roots but not in expanding leaves or stems. The NaCl responsiveness of the halophyte to accumulate plasma membrane H(+)-ATPase mRNA in roots was substantially greater than that of the glycophyte. Salt-induced transcript accumulation in A. nummularia roots was localized by in situ hybridization predominantly to the elongation zone, but mRNA levels also increased in the zone of differentiation. Increased message accumulation in A. nummularia roots could be detected within 8 h after NaCl (400 mM) treatment, and maximal levels were severalfold greater than in roots of untreated control plants. NaCl-induced plasma membrane H(+)-ATPase gene expression in expanded leaves and roots presumably indicates that these organs require increased H(+)-electrochemical potential gradients for the maintenance of plant ion homeostasis for salt adaptation. The greater capacity of the halophyte to induce plasma membrane H(+)-ATPase gene expression in response to NaCl may be a salt-tolerance determinant.
机译:通过使用编码ATPases的同源cDNA探针比较器官特异性mRNA丰度来评估糖化烟草(Nicotiana tabacum L. var Wisconsin 38)和盐生植物滨藜属中质膜H(+)-ATPase基因表达的NaCl调节各自的植物。 NaCl在完全展开的叶子和根中诱导了mRNA的积累,但在展开的叶子或茎中却没有。盐生植物在根中积累质膜H(+)-ATPase mRNA的NaCl反应性明显大于糖生植物。盐诱导的A.nummularia根中的转录物积累主要通过原位杂交定位在延伸区,但mRNA水平也在分化区增加。在NaCl(400 mM)处理后8小时内,可以检测到农杆菌根中增加的信息积累,其最大含量比未经处理的对照植物的根高几倍。 NaCl诱导的扩大的叶和根中的质膜H(+)-ATPase基因表达可能表明这些器官需要增加H(+)-电化学势梯度来维持植物离子稳态以适应盐适应。盐生植物响应NaCl诱导质膜H(+)-ATPase基因表达的更大能力可能是耐盐性的决定因素。

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