...
首页> 外文期刊>African Journal of Biotechnology >Salt stress induced ion accumulation, ion homeostasis, membrane injury and sugar contents in salt-sensitive rice (Oryza sativa L. spp. indica) roots under iso-osmotic conditions
【24h】

Salt stress induced ion accumulation, ion homeostasis, membrane injury and sugar contents in salt-sensitive rice (Oryza sativa L. spp. indica) roots under iso-osmotic conditions

机译:等渗条件下盐敏感性水稻根系中的盐胁迫诱导离子积累,离子稳态,膜损伤和糖含量

获取原文
           

摘要

Excess salt induced ionic and osmotic stresses that disturbed metabolism and led to reduction of plant development. Previous studies reported that sugars in stressed plants were involved in stress tolerance. However, the role of sugars in salt-stressed plants against only ionic effects is still unclear. The objective of this research was to investigate accumulation and homeostasis of ions, membrane injury, water content, growth characters and sugar contents in roots, in-response to salt stress under iso-osmotic conditions. Salt-sensitive rice, Pathumthani1 (PT1) was grown on MS culture medium for 7 days and was adjusted to salt stress under iso-osmotic conditions (-1.75 ± 0.20 MPa) by mannitol for 4 days. An increase in NaCl increased Na+?and Na+:K+?in PT1 roots leading to increased membrane injury, while the water content was decreased. Additionally, growth characters, including number, length, fresh weight and dry weight of roots, were inhibited. Sugar accumulations in PT1 roots were enhanced by increases in NaCl. The increase in Na+?was positively related to total soluble sugars, resulting in an osmotic adjustment of the membrane that maintained water availability. The accumulation of sugars in PT1 roots may be a primary salt-defense mechanism and may function as an osmotic control.
机译:过量的盐诱导离子和渗透胁迫,干扰了新陈代谢并导致植物发育减少。先前的研究报道,胁迫植物中的糖与胁迫耐受性有关。但是,糖在盐胁迫植物中仅对离子作用的作用仍不清楚。这项研究的目的是研究离子的积累和体内稳态,膜损伤,水分,生长特性和根中糖含量,以及在等渗条件下对盐胁迫的响应。盐敏感性水稻Pathumthani1(PT1)在MS培养基上生长7天,并在等渗条件下(-1.75±0.20 MPa)用甘露醇调节至盐胁迫4天。 NaCl的增加会增加PT1根中Na +和Na +:K +α的含量,从而导致膜损伤增加,而水分含量却降低。此外,还抑制了根的生长特性,包括根的数量,长度,鲜重和干重。 NaCl的增加会增强PT1根中的糖分积累。 Na + +的增加与总可溶性糖呈正相关,导致膜的渗透调节,从而保持了水的可利用性。 PT1根中糖的积累可能是主要的盐防御机制,并可能起到渗透控制作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号