首页> 外文期刊>Pakistan journal of botany >Growth modulation and ion partitioning in salt stressed sorghum (Sorghum bicolor L.) by exogenous supply of salicylic acid
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Growth modulation and ion partitioning in salt stressed sorghum (Sorghum bicolor L.) by exogenous supply of salicylic acid

机译:外源供应水杨酸对盐胁迫高粱(Sorghum bicolor L.)的生长调节和离子分配

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An experiment was conducted to investigate the possible involvement of exogenous salicylic acid in salinity tolerance of two sorghum (Sorghum bicolor L.) lines, viz., PARI-S-4 and YSS-9. Three salinity levels i.e., 0, 60 and 120 mmol NaCl were developed at the time of seed sowing. Foliar spray of salicylic acid (0, 25 and 50 mg L-1) was applied 14 days after germination. Increasing salinity treatments reduced the fresh and dry mass of both root and shoot. Plants treated with salicylic acid showed no recovery from salt induced reduction in biomass production. Root/shoot fresh and dry mass ratio, however, was not affected by salinity and salicylic acid treatments. Salicylic acid treated plants showed no recovery from excessive accumulation of Na+in their shoot/root, when under salt stress. Reduction in the accumulation of K+in salt treated plants not compensated by exogenous application of salicylic acid. Salt stressed plants treated with salicylic acid, however, showed higher shoot Ca2+than untreated ones. Exogenous application of 25 ppm of salicylic acid proved to be more effective in reducing the salt induced perturbance in shoot Ca2+as compared to salicylic acid level of 50 mg L-1. Shoot and root Na+/ K+ratio though increased with increase in salinity levels, which was not reversed by exogenous supply of salicylic acid.
机译:进行了一项实验,以研究外源水杨酸可能参与了两个高粱(Porg-S-4和YSS-9)高粱的耐盐性。种子播种时出现了三种盐度水平,即0、60和120 mmol NaCl。发芽后14天,叶面喷洒水杨酸(0、25和50 mg L-1)。增加盐度处理会减少根和茎的新鲜和干燥质量。用水杨酸处理过的植物没有从盐诱导的生物量产生减少中恢复。根/芽鲜干质量比不受盐度和水杨酸处理的影响。在盐胁迫下,水杨酸处理过的植物没有从芽/根中过量的Na +积累中恢复过来。盐处理植物中钾离子累积的减少不能通过外源施用水杨酸来补偿。但是,用水杨酸处理过的盐胁迫植物比未处理过的植物显示出更高的芽Ca2 +。与50 mg L-1的水杨酸水平相比,外源施用25 ppm的水杨酸被证明可以更有效地减少盐引起的芽Ca2 +中的干扰。茎和根的Na + / K +比例虽然随盐度水平的增加而增加,但是水杨酸的外源供应并未逆转。

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