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NaCl pre-treatment at the seedling stage enhances fruit yield of tomato plants irrigated with salt water

机译:在苗期进行NaCl预处理可提高咸水灌溉番茄植株的果实产量

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摘要

Although salt-adaptation seems to be a widespread property of plants, the adaptive response has been rarely differentiated to the tolerance response. We report on the adaptive response of tomato plants to growing under saline conditions following a 15 day pre-treatment with a lower NaCl concentration (half) than that used during the plant growth. After 20 days of salt treatment (100 mM NaCl), the biomass of the adapted plants increased significantly with respect to that of the unadapted plants when the pre-treatment was applied to five leaf seedlings, but not at the two leaf stage. The long-term adaptive response was determined in two tomato genotypes with different tolerance to moderate salt levels. At 70 mM NaCl, the adapted-plants of the more salt-sensitive genotype produced up to 29% more fruit yield than did the unadapted plants. However, no positive effect was observed to long-term in the adapted-plants of the more salt-tolerant genotype, which suggests that the stress level necessary to trigger the adaptive response is related to the tolerance degree of genotype. The physiological response of the plants showing a positive response to the adaptation was also modified to long-term. Thus, K+ concentrations increased in the young leaves of the adapted plants, with respect to unadapted plants, and moreover these differences increased with the salinization period. These results indicate that the changes in growth and physiological responses induced by NaCl pre-treatment at the seedling stage are maintained throughout plant life cycle and this is, therefore, an interesting strategy for increasing the salt tolerance in tomato plants.
机译:尽管盐适应似乎是植物的普遍特性,但适应性反应很少与耐受性反应区分开。我们报告了在经过15天预处理后,NaCl浓度(一半)比植物生长过程中使用的NaCl浓度低的条件下,番茄植物对在盐条件下生长的适应性反应。盐处理20天(100 mM NaCl)后,当对5片叶苗进行预处理后,适应植物的生物量相对于未适应植物显着增加,但在两叶阶段则没有。在对中等盐水平具有不同耐受性的两种番茄基因型中,确定了长期适应性反应。在70 mM NaCl下,对盐敏感度更高的基因型的适应性植物比未适应性植物的果实产量高29%。然而,在耐盐性更高的基因型的适应植物中未观察到长期的积极影响,这表明触发适应性反应所必需的胁迫水平与基因型的耐受程度有关。对适应表现出积极响应的植物的生理响应也被修改为长期的。因此,与不适应的植物相比,适应植物的幼叶中K +浓度增加,而且这些差异随着盐碱化时期的增加而增加。这些结果表明,在整个植物生命周期中,NaCl预处理在幼苗期诱导的生长和生理响应变化均得以维持,因此,这是提高番茄植株耐盐性的有趣策略。

著录项

  • 来源
    《Plant and Soil》 |2001年第2期|231-238|共8页
  • 作者单位

    Department of Irrigation and Salinity Centro de Edafología y Biología Aplicada del Segura (CSIC);

    Department of Irrigation and Salinity Centro de Edafología y Biología Aplicada del Segura (CSIC);

    Department of Irrigation and Salinity Centro de Edafología y Biología Aplicada del Segura (CSIC);

    Department of Irrigation and Salinity Centro de Edafología y Biología Aplicada del Segura (CSIC);

    Department of Irrigation and Salinity Centro de Edafología y Biología Aplicada del Segura (CSIC);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fruit yield; inorganic solutes; L. esculentum; salt-adaptation; sugars;

    机译:水果产量;无机溶质;L。食用;盐适应;糖;

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