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首页> 外文期刊>Theoretical and Experimental Plant Physiology >Morphological and physiological traits reveal differential salinity tolerance of two contrastingGlandulariacultivars
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Morphological and physiological traits reveal differential salinity tolerance of two contrastingGlandulariacultivars

机译:形态学和生理特性显示两个对比度的差异盐度耐受性

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In view of the current, continuous decrease of water availability, the need to explore new mitigation alternatives has given focus to salt-tolerant genotypes. The aim of this work was to study salt tolerance of two ornamental cultivars ofGlandularia(Glandularia x hybrida) of contrasting vigor, Dulce Coral and Extrema Violeta, breeded at the Floriculture Institute of INTA. A greenhouse experiment was carried out with potted plants. Plants were subjected to four salt treatments 1.2, 2.4, 3.5, 4.4 dS m(-1)(EC), and a control (0.03 dS m(-1)). Shoot dry weight of Dulce Coral was not affected by salinity. In contrast, the dry weight of Extrema Violeta decreased sharply as salinity increased. The root:shoot ratio was always higher for Extrema Violeta than Dulce Coral. The leaves of Dulce Coral accumulated less Na(+)and Cl(-)than Extrema Violeta. Moreover, Extrema Violeta exhibited severe foliar salt damage, but Dulce Coral showed only a few, without compromising its commercial value. Besides, Dulce Coral had a higher assimilation rate than Extrema Violeta at all treatments. All these features could suggest Na+ and Cl(-)exclusion as salt-tolerant mechanism for Dulce Coral. Other mechanisms adopted by Dulce Coral to cope with salinity was the maintenance of a higher K+/Na(+)and Ca2+/Na(+)ratio in its leaves, a lower root:shoot ratio and the maintenance of photosynthesis. Therefore, Dulce Coral could be proposed as a parent for breeding programs with the objective of improving salt tolerance inGlandularia.In this exploratory study, we distinguish some of the most important physiological (K+/Na(+)and Ca2+/Na+) and morphological (root:shoot ratio) traits related to salinity tolerance inGlandularia.
机译:鉴于当前的水可用性持续减少,探索新减缓替代品的需要将焦点焦点为耐盐基因型。这项工作的目的是研究对比鲜明的活力,Dulce珊瑚和极值紫杉植物的凝灰岩(Glandularia X Hybrida)的耐盐耐药性,养殖在植物中的Inta植物学院。用盆栽植物进行温室实验。将植物进行四种盐处理1.2,2.4,3.5,4.4ds m(Ec)和对照(0.03 ds m(-1))。 Dulce珊瑚的射击干重不受盐度的影响。相反,随着盐度的增加,极值紫管的干重急剧下降。 root:极值紫罗兰的射击比率总是高于dulce珊瑚。 Dulce珊瑚的叶子累积了较少的Na(+)和Cl( - )而不是极值紫管。此外,极值紫薇呈现严重的叶盐损伤,但Dulce Coral仅显示了一些,而不会影响其商业价值。此外,Dulce Coral在所有治疗中的极其紫管具有更高的同化率。所有这些特征都可以提出Na +和Cl( - )排除作为Dulce珊瑚的耐盐机制。 Dulce珊瑚采用的其他机制应对盐度是维持其叶子中较高的K + / Na(+)和Ca2 + / Na(+)比,较低的根:芽比和光合作用的维持。因此,可以提出Dulce珊瑚作为培育方案的父母,以改善耐盐性Inglandularia。在该探索性研究中,我们区分一些最重要的生理(K + / Na(+)和Ca2 + / Na +)和形态学( root:射击比率与盐度耐受性有关的特征。

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