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Comparative effects of salt and alkali stresses on growth, osmotic adjustment and ionic balance of an alkali-resistant halophyte Suaeda glauca (Bge.)

机译:盐和碱胁迫对耐碱盐生植物Suaeda glauca(Bge。)的生长,渗透调节和离子平衡的比较作用

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Effects of salt and alkali stresses on growth, osmotic adjustment and ionic balance of Suaeda glauca (Bge.), an alkali-resistant succulent halophyte, were compared. The results showed that alkali stress clearly inhibited the growth of S. glauca. Moreover, the concentrations of Na+ and K+ both increased with increasing salinity under both stresses, suggesting no competitive inhibition between absorptions of Na+ and K+. The mechanism underlying osmotic adjustment during salt stress was similar to alkali stress in shoots. The shared essential features were that organic acids, betaine and inorganic ions (dominated by Na+) mostly accumulated. On the other hand, the mechanisms governing ionic balance under both stresses were different. Under salt stress, S. glauca accumulated organic acids and inorganic anions to maintain the intracellular ionic equilibrium, but the anion contribution of inorganic ions was greater than that of organic acids. However, the concentrations of inorganic anions under alkali stress were significantly lower than those under salt stress of the same intensity, suggesting that alkali stress might inhibit uptake of anions, such as NO3 – and H2PO4 –. Under alkali stress, organic acids were the dominant factor in maintaining ionic equilibrium. The contribution of organic acids to anions was 74.1%, while that of inorganic anions was only 25.9%. S. glauca enhanced the synthesis of organic acids, dominated by oxalic acid, to compensate for the shortage of inorganic anions.
机译:比较了盐和碱胁迫对耐碱多肉植物盐生菜(Suaeda glauca)的生长,渗透调节和离子平衡的影响。结果表明,碱胁迫明显抑制了S. glauca的生长。此外,在两种胁迫下,Na + 和K + 的浓度均随着盐度的增加而增加,表明Na + 和Na的吸收之间没有竞争性抑制作用。 K + 。盐胁迫期间渗透调节的潜在机制与枝条中的碱胁迫相似。共有的基本特征是有机酸,甜菜碱和无机离子(以Na + 为主)积累最多。另一方面,控制两种应力下离子平衡的机理是不同的。在盐胁迫下,S。glauca积累了有机酸和无机阴离子,以维持细胞内离子平衡,但无机离子的阴离子贡献大于有机酸。然而,在相同强度下,碱胁迫下的无机阴离子浓度明显低于盐胁迫下的浓度,表明碱胁迫可能会抑制NO 3 和H 2 PO 4 。在碱胁迫下,有机酸是维持离子平衡的主要因素。有机酸对阴离子的贡献为74.1%,而无机阴离子仅为25.9%。 S. glauca增强了以草酸为主的有机酸的合成,以弥补无机阴离子的不足。

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