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Physiological Functions of Nitric Oxide in Sedum Alfredii Hance under Complex Heavy Metals Stress

机译:复杂重金属胁迫下景天一氧化氮中的一氧化氮的生理功能

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Heavy metals contamination is a major environmental issue, and phytoremediation is a promising, environmentally friendly alternative to conventional cleanup techniques for heavy metal contaminated sites. This paper is intended to explore the physiological functions of nitric oxide (NO) in the signaling pathways as well as defense responses in Sedum Alfredii Hance, a new zinc (Zn) promising hyperaccumulating plant species for the phytoremediation exposured to Cd/Zn/Pb complex contaminations. The induced NO and free radicals (O2-, H2O2, ·OH and malondialdehyde) were quantitatively determined and the functions of NO, reactive oxygen species (ROS) and sacylic acid (SA) in the regulation of the redox signaling against oxidative stress were also discussed. The hypothetical mode of NO effecting plant defense responses was proposed. The results indicated that NO as the versatile and powerful effector of redox-regulated signaling, can acts synergistically with ROS to defend the plant against oxidative attack caused by Cd/Zn/Pb complex contaminations by activating elaborate defenses.
机译:重金属污染是一个主要的环境问题,对于传统的重金属污染场地的净化技术,植物修复是一种有前途的,环境友好的替代方法。本文旨在探讨一氧化氮(NO)在信号传导途径中的生理功能以及Sedum Alfredii Hance中的防御反应,Sedum Alfredii Hance是一种新的锌(Zn),有望对植物暴露于Cd / Zn / Pb复合物时具有超强的植物修复作用。污染。定量确定了诱导的NO和自由基(O2-,H2O2,·OH和丙二醛),并且还确定了NO,活性氧(ROS)和水杨酸(SA)在氧化还原信号对氧化应激的调节中的功能。讨论过。提出了NO影响植物防御反应的假设模式。结果表明,NO是氧化还原调节信号的多功能强大功能,可以与ROS协同发挥作用,通过激活精细的防御机制来防御Cd / Zn / Pb复合污染物引起的氧化攻击。

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