首页> 外文期刊>Trees. Structure and Function >Salicylic acid induces physiological and biochemical changes in Torreya grandis cv. Merrillii seedlings under drought stress
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Salicylic acid induces physiological and biochemical changes in Torreya grandis cv. Merrillii seedlings under drought stress

机译:水杨酸可引起Torreya grandis cv的生理和生化变化。干旱胁迫下的美林幼苗

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摘要

SA treatment effectively ameliorated the negative effect of moderate drought stress on T. grandis Seedlings through increasing the water content, Pn, proline content, antioxidant enzymes activity and reducing MDA. Water availability is one of the most critical factors that limits the growth and development of plants. Salicylic acid (SA) is an important signal molecule that modulates plant responses to abiotic stress. To elucidate the regulating mechanism of exogenous SA on Torreya grandis cv. Merrillii under different water stresses, a pot experiment was conducted in a greenhouse. Exposure of T. grandis seedlings to drought conditions resulted in reduced growth rate that was associated with a decline in water content and CO2 assimilation. Foliar application of SA effectively increased the water content, net CO2 assimilation rate, proline content and antioxidant enzymes activity in the plants, which helped T. grandis to acclimate to moderate drought stress and increase the shoot dry matter. However, when the plants were under severe drought stress, the relative water content and CO2 assimilation in the SA-treated plants were significantly lower than those in the control plants. Therefore, our results indicated that SA can effectively ameliorate the negative effect of moderate drought stress on T. grandis seedling growth
机译:SA处理通过增加水分含量,Pn,脯氨酸含量,抗氧化酶活性和降低MDA含量,有效减轻了中等干旱胁迫对大叶黄杨幼苗的不利影响。水分供应是限制植物生长发育的最关键因素之一。水杨酸(SA)是重要的信号分子,可调节植物对非生物胁迫的反应。阐明外源SA对Torreya grandis cv的调控机制。 Merrillii在不同的水分胁迫下,在温室中进行盆栽试验。 T. grandis幼苗暴露于干旱条件下导致生长速率降低,这与水分含量和CO2同化率下降有关。叶面喷施SA可以有效提高植物的水分含量,净CO2同化率,脯氨酸含量和抗氧化酶活性,这有助于T. grandis适应中等干旱胁迫并增加枝干。但是,当植物处于严重干旱胁迫下时,经SA处理的植物中的相对含水量和CO2同化显着低于对照植物。因此,我们的结果表明,SA可以有效减轻中等干旱胁迫对大叶黄杨幼苗生长的负面影响。

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