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Effect of salinity on transmembrane potential of the roots of Sesuvium portulacastrum (L.) L.

机译:盐度对东南雪草根部跨膜电位的影响

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Halophytes are plants that complete their life cycle in saline environments. Halophytes can therefore be viewed as potential gene sources for genetic manipulation of economically important crop plants.  In this study the influence of salinity on potential difference (PD) and surface pH of root cortical cells was investigated. The effect of the metabolic inhibitor, potassium cyanide (KCN), on PD of the root cells was also investigated. A study of the electrophysiological characteristics of the membrane of the root cortical cells showed that there were two components to the root cell PD. One component (diffusional) was affected by the increasing NaCl concentration in the growth medium, while the other component (electrogenic) remained unaffected by the NaCl concentration up to 200 mol m-3. There is evidence to suggest that this electrogenic component of the PD was maintained by an efflux pump which presumably controls ion uptake and indirectly growth. It is concluded that this electrogenic efflux pump is a major factor contributing to salt tolerance in Sesuvium portulacastrum.  
机译:盐生植物是在盐环境中完成其生命周期的植物。因此,盐藻可被视为对重要的经济作物进行基因操作的潜在基因来源。在这项研究中,研究了盐度对根皮层细胞的电位差(PD)和表面pH的影响。还研究了代谢抑制剂氰化钾(KCN)对根细胞PD的影响。对根皮层细胞膜的电生理特性的研究表明,根细胞PD有两个成分。生长培养基中NaCl浓度的增加会影响一种成分(扩散性),而200 mol m-3以下的NaCl浓度则不会影响另一种成分(电性的)。有证据表明,PD的这一电原性成分是由外排泵维持的,该外排泵大概控制着离子的吸收和间接生长。结论是,该电致外排泵是导致东南葡萄(Sesuvium portulacastrum)耐盐性的主要因素。  

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