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Salicylic acid-induced physiological and biochemical changes in lemongrass varieties under water stress

机译:水杨酸对水分胁迫下柠檬草品种的生理生化变化的影响

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Salicylic acid (SA) treatment reduces the damaging action by water deficit on growth and accelerates a restoration of growth processes. The aim of the present work was to study the physiological and biochemical alteration induced by SA in lemongrass plants under stress conditions. Therefore, a pot culture experiment was conducted to test whether SA application at concentration of (10~(-5) M) through foliar spray could protect lemongrass (Cymbopogon flexuosus Steud. Wats.) varieties (Neema and Krishna), subjected to drought stress on the basis of growth parameters and biochemical constituents, proline metabolism and quality attributes including citral content. The treatments were as follows: (i) 100% FC+0 SA; (ii) 75% FC+0 SA; (iii) 50% FC+0 SA; (iv) 75%+FC 10~(-5) M SA; and (v) 50%FC+10~(-5) M SA. The growth parameters were significantly reduced under the applied water stress levels; however, foliar application of salicylic acid (10~(-5) M) improved the growth parameters in stress-affected plants. The plants under water stress exhibited a significant increase in activities of nitrate reductase and carbonic anhydrase, and electrolyte leakage, proline content, free amino acid and in PEP carboxylase activity. Content and yield of essential oil also significantly decreased in plants that faced water stress. Thus, it was concluded that variety Neema is the more tolerant variety as compared to Krishna on the basis of content and oil yield and well adapted to drought stress conditions.
机译:水杨酸(SA)处理减少了水分亏缺对生长的破坏作用,并加速了生长过程的恢复。本研究的目的是研究SA在胁迫条件下对柠檬草植物生理和生化的影响。因此,进行了盆栽试验,以测试通过叶面喷施浓度为(10〜(-5)M)的SA能否保护遭受干旱胁迫的柠檬草(Cymbopogon flexuosus Steud。Wats。)品种(Neema和Krishna)。根据生长参数和生化成分,脯氨酸代谢和包括柠檬醛含量的质量属性。处理如下:(i)100%FC + 0 SA; (ii)75%FC + 0 SA; (iii)50%FC + 0 SA; (iv)75%+ FC 10〜(-5)M SA; (v)50%FC + 10〜(-5)M SA。在所施加的水分胁迫水平下,生长参数显着降低。叶面水杨酸(10〜(-5)M)的施用改善了受胁迫植物的生长参数。水分胁迫下的植物在硝酸还原酶和碳酸酐酶的活性,电解质泄漏,脯氨酸含量,游离氨基酸和PEP羧化酶活性方面均显着提高。在面临水分胁迫的植物中,精油的含量和产量也显着下降。因此,可以得出结论,就含量和油产量而言,与克里希纳相比,Neema品种具有更强的耐受性,并且非常适合干旱胁迫条件。

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