首页> 外文期刊>Pakistan journal of botany >Silicon alleviates the adverse effects of salinity and drought stress on growth and endogenous plant growth hormones of soybean (Glycine max L.)
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Silicon alleviates the adverse effects of salinity and drought stress on growth and endogenous plant growth hormones of soybean (Glycine max L.)

机译:硅减轻了盐分和干旱胁迫对大豆生长和内源植物生长激素的不利影响(Glycine max L.)

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Agricultural industry is subjected to enormous environmental constraints, particularly due to salinity and drought. We evaluated the role of silicon (Si) in alleviating salinity and drought induced physio-hormonal changes in soybean grown in perlite. The plant growth attributes i.e., shoot length, plant fresh weight and dry weight parameters of soybean improved with elevated Si nutrition, while they decreased with NaCl and polyethylene glycol (PEG) application. The adverse effects of NaCl and PEG on plant growth were alleviated by adding 100 mg L-1and 200 mg L-1Si to salt and drought stressed treatments. It was observed that Si effectively mitigated the adverse effects of NaCl on soybean than that of PEG. The chlorophyll contents were found to be least affected as an insignificant increase was observed with Si application. Bioactive GA1and GA4 contents of soybean leaves increased, when Si was added to control or stressed plants. Jasmonic acid (JA) contents sharply increased under salinity and drought stress but declined when the plants were supplemented with Si. Similarly, free salicylic acid (SA) level also increased with NaCl and PEG application. However, free SA level further increased with the addition of Si to salt treated plants, but decreased when Si was given to PEG treated plants. It was concluded that Si improves physio-hormonal attributes of soybean and mitigate adverse effects of salt and drought stress.
机译:农业工业受到巨大的环境限制,特别是由于盐碱和干旱。我们评估了硅(Si)在缓解珍珠岩中生长的大豆盐分和干旱引起的生理激素变化中的作用。硅营养水平的提高改善了大豆的植物生长属性,即茎长,植物鲜重和干重参数,而NaCl和聚乙二醇(PEG)的施用则降低了这些参数。通过在盐和干旱胁迫处理中添加100 mg L-1和200 mg L-1Si,可以缓解NaCl和PEG对植物生长的不利影响。观察到,与PEG相比,Si有效地减轻了NaCl对大豆的不利影响。发现叶绿素含量受到的影响最小,因为施用硅后观察到微不足道的增加。当将Si添加到对照或胁迫植物中时,大豆叶片的生物活性GA1和GA4含量增加。在盐分和干旱胁迫下,茉莉酸(JA)含量急剧增加,但在植物中添加硅后,茉莉酸含量却下降了。同样,NaCl和PEG的添加也增加了游离水杨酸(SA)的含量。然而,随着向盐处理的植物中添加Si,游离SA含量进一步增加,但是当将PEG处理的植物中添加Si时,游离SA含量降低。结论是硅改善了大豆的生理激素特性,减轻了盐和干旱胁迫的不利影响。

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