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Mitigating the Effects of Salinity by Foliar Application of Salicylic Acid in Fenugreek

机译:叶酸在胡芦巴中减轻水杨酸的盐度影响

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Present research work was conducted to alleviate the salinity-induced harmful effect on biomass production and physiochemical attributes of fenugreek by foliar application of salicylic acid. Two varieties (Deli Kabul and Kasuri) were grown in salt treated (100 mM NaCl) and untreated (0 mM NaCl) growth medium. Two levels of salicylic acid (0 mg L−1and 100 mg L−1) were applied through foliar method. Salinity stress significantly reduced the growth biomass in both varieties. Higher shoot fresh weight was recorded in Deli Kabul, while lower in Kasuri. Such reduction in growth biomass was mitigated by the foliar application of SA in both plants. Salinity caused a marked reduction in gas exchange attributes including net CO2assimilation rate, transpiration rate, stomatal conductance, and substomatal CO2concentration. Exogenous applied salicylic acid also overcomes the reduction in gas exchange attributes of the plants. The varieties “Deli Kabul” and “Kasuri” showed higher and lower net CO2assimilation rate, respectively. These results indicate that growth medium salinity induced reduction in biomass production, gas exchange attributes, and also chlorophyll contents whereas the application of SA through foliar method can be used to protect plant growth and improve these attributes under salt stress.
机译:目前的研究工作是通过叶面施用水杨酸来减轻盐度对胡芦巴生物量生产和理化特性的有害影响。在盐处理(100μmMNaCl)和未处理(0μmMNaCl)生长培养基中生长了两个品种(Deli Kabul和Kasuri)。通过叶面法施用两个水平的水杨酸(0 mg L-1和100 mg L-1)。盐胁迫显着降低了两个品种的生长生物量。 Deli Kabul的枝条鲜重较高,而Kasuri的枝条鲜重较低。通过在两种植物中叶面施用SA减轻了生长生物量的这种减少。盐度导致气体交换属性的显着减少,包括净二氧化碳吸收率,蒸腾速率,气孔导度和气孔下二氧化碳浓度。外源施用的水杨酸还克服了植物气体交换特性的降低。 “ Deli Kabul”和“ Kasuri”两个品种的净二氧化碳同化率分别较高和较低。这些结果表明,生长介质盐度诱导生物量产量,气体交换属性以及叶绿素含量的降低,而通过叶面方法施用SA可用于保护植物生长并改善盐胁迫下的这些属性。

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