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首页> 外文期刊>Plant Growth Regulation >Exogenously applied paclobutrazol modulates growth in salt-stressed wheat plants
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Exogenously applied paclobutrazol modulates growth in salt-stressed wheat plants

机译:外源施用多效唑调节盐胁迫小麦植株的生长

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Effect of paclobutrazol (PBZ) treatment on salinity tolerance of wheat (Triticum aestivum) was investigated on a salt-tolerant (Karchia-65) and salt-sensitive (Ghods) cultivars. Salinity significantly reduced the investigated growth parameters such as plant height, length and area of sixth leaf, root length, fresh and dry weight of shoot, roots and sixth leaf, water content (WC) of plant and seeds weight in the both cultivars. The negative effect of salinity in Ghods cultivar was more than Karchia cultivar. However, PBZ treatment reduced the growth in both cultivars, the differences in plant growth among various levels of NaCl decreased in PBZ-treated plants. Salt stress resulted in high accumulation of Na+ in the sixth leaf and roots in both cultivars, particularly in Ghods cultivar. Against Karchia cultivar, salt stress decreased the storage of K+, P and N in sixth leaf and roots in Ghods cultivar. In the both cultivars, PBZ treatment enhanced the K+, P and N contents in sixth leaf and roots by increasing salinity. Although PBZ treatment decreased the growth of plants, it improved the weight of seeds against stress damage. PBZ treatment reduced the accumulation of harmful Na+ ion in plant tissues while increased the K+, P and N contents. These observations suggest that PBZ treatment may increase tolerance by diminishing ionic imbalance caused by salt stress.
机译:在耐盐(Karchia-65)和盐敏感(Ghods)品种上研究了多效唑(PBZ)处理对小麦(Triticum aestivum)耐盐性的影响。盐度显着降低了所研究的生长参数,例如两个品种的植物高度,第六叶的长度和面积,根的长度,枝干和根的鲜重和干重,根与第六叶的水分,植物的水分含量和种子重量。盐分对Ghods品种的负面影响大于Karchia品种。然而,PBZ处理降低了两个品种的生长,在PBZ处理过的植物中,不同水平的NaCl之间的植物生长差异减小了。盐胁迫导致两个品种(尤其是戈德斯品种)的第六叶片和根中Na + 的积累量很高。盐分胁迫降低了Karchia品种的Ghods品种第六叶片和根中的K +,s,P和N含量。在这两个品种中,PBZ处理均通过增加盐分来提高第六叶片和根中的K +,P和N含量。尽管PBZ处理降低了植物的生长,但它提高了种子的重量以抵抗胁迫。 PBZ处理减少了植物组织中有害Na +离子的积累,同时增加了K +,P和N的含量。这些观察结果表明,PBZ处理可通过减少盐胁迫引起的离子不平衡来提高耐受性。

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