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Physio-biochemical and morphological characters of halophyte legume shrub Acacia ampliceps seedlings in response to salt stress under greenhouse

机译:盐胁迫下盐生植物豆科灌木金合欢幼苗的生理生化和形态特征

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摘要

Acacia ampliceps (salt wattle), a leguminous shrub, has been introduced in salt-affected areas in the northeast of Thailand for the remediation of saline soils. However, the defense mechanisms underlying salt tolerance A. ampliceps are unknown. We investigated various physio-biochemical and morphological attributes of A. ampliceps in response to varying levels of salt treatment (200–600 mM NaCl). Seedlings of A. ampliceps (25 ± 2 cm in plant height) raised from seeds were treated with 200 mM (mild stress), 400 and 600 mM (extreme stress) of salt treatment (NaCl) under greenhouse conditions. Na+ and Ca2+ contents in the leaf tissues increased significantly under salt treatment, whereas K+ content declined in salt-stressed plants. Free proline and soluble sugar contents in plants grown under extreme salt stress (600 mM NaCl) for 9 days significantly increased by 28.7 (53.33 μmol g–1 FW) and 3.2 (42.11 mg g–1 DW) folds, respectively over the control, thereby playing a major role as osmotic adjustment. Na+ enrichment in the phyllode tissues of salt-stressed seedlings positively related to total chlorophyll (TC) degradation (R2 = 0.72). Photosynthetic pigments and chlorophyll fluorescence in salt-stressed plants increased under mild salt stress (200 mM NaCl). However, these declined under high levels of salinity (400–600 mM NaCl), consequently resulting in a reduced net photosynthetic rate (R2 = 0.81) and plant dry weight (R2 = 0.91). The study concludes that A. ampliceps has an osmotic adjustment and Na+ compartmentation as effective salt defense mechanisms, and thus it could be an excellent species to grow in salt-affected soils.
机译:在泰国东北部受盐影响的地区,引入了豆科灌木相思草(盐荚),以修复盐渍土。但是,尚不知道盐耐受性双歧杆菌的防御机制。我们研究了不同浓度的盐处理(200–600 mM NaCl)对拟南芥的各种生理生化和形态属性的影响。在温室条件下,用200 mM(轻度胁迫),400和600 mM(极度胁迫)的盐处理(NaCl)处理从种子中生长出的拟南芥(植物高度25±2 cm)的幼苗。盐胁迫下,叶片组织中Na + 和Ca 2 + 的含量显着增加,而K + 的含量下降。在极端盐胁迫(600 mM NaCl)下生长9天的植物中游离脯氨酸和可溶性糖含量分别显着增加了28.7(53.33μmolg –1 FW)和3.2(42.11 mg g – 1 DW)分别在对照上折叠,从而在渗透调节中起主要作用。盐胁迫幼苗的叶状组织中Na + 的富集与总叶绿素(TC)的降解呈正相关(R 2 = 0.72)。在轻度盐胁迫(200 mM NaCl)下,盐胁迫植物的光合色素和叶绿素荧光增加。但是,这些盐分在高盐度(400–600 mM NaCl)下下降,因此导致净光合速率(R 2 = 0.81)和植物干重(R 2 = 0.91)。研究得出结论,A。ampliceps具有渗透调节作用和Na + 分隔作为有效的盐分防御机制,因此它可能是在受盐渍影响的土壤中生长的优良物种。

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