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小麦 trHb 在一氧化氮清除中的作用。

Role of wheat trHb in nitric oxide scavenging.

作者信息

Kim Dae Yeon, Hong Min Jeong, Seo Yong Weon

机构信息

College of Life Science and Biotechnology, Korea University, Anam-dong, Seongbuk-gu, Seoul, 136-701, Korea.

出版信息

Mol Biol Rep. 2014 Sep;41(9):5931-41. doi: 10.1007/s11033-014-3468-z. Epub 2014 Jul 1.

Abstract

We examined the role of wheat truncated-hemoglobin (TatrHb) in nitric oxide (NO) scavenging in transgenic Arabidopsis plants by assessing the response to an NO donor/scavenger and salt stress. The degree of increase in Na(+) and decrease in K(+) levels in the transgenic plants were more than those in the wild-type plants, and the ratio of Na(+) to K(+) increased in the transgenic plants under salt stress. Endogenous NO increased dramatically in the salt-treated wild-type plants but not in the transgenic plants. Additionally, the maximum photosystem II quantum ratio of variable to maximum fluorescence (Fv/Fm) in transgenic plants decreased more significantly than that in the wild-type plants, indicating that the transgenic plants suffered more severe photosynthetic damage because of salt stress than that by the wild type. Similar results were observed in germination experiments by using Murashige and Skoog media containing 100 mM sodium chloride. The Fv/Fm decreased in the leaves of salt-treated transgenic plants, indicating that transgenic seeds were more sensitive to salt stress than that by the wild-type seeds. In addition, the negative effect on seed germination was more severe in transgenic plants than in the wild types under NaCl treatment conditions. The results support the hypothesis that plant trHb shares NO scavenging functions and characteristics with bacterial trHb.

摘要

我们通过评估转基因拟南芥植物对一氧化氮(NO)供体/清除剂的反应以及盐胁迫,研究了小麦截短型血红蛋白(TatrHb)在清除NO中的作用。转基因植物中Na(+)水平的增加程度和K(+)水平的降低程度均高于野生型植物,并且在盐胁迫下转基因植物中Na(+)与K(+)的比值增加。在盐处理的野生型植物中内源性NO显著增加,但在转基因植物中没有增加。此外,转基因植物中光系统II可变荧光与最大荧光的最大量子比值(Fv/Fm)下降比野生型植物更显著,这表明转基因植物因盐胁迫遭受的光合损伤比野生型更严重。在使用含有100 mM氯化钠的Murashige和Skoog培养基进行的发芽实验中也观察到了类似结果。盐处理的转基因植物叶片中的Fv/Fm下降,表明转基因种子比野生型种子对盐胁迫更敏感。此外,在NaCl处理条件下,转基因植物对种子萌发的负面影响比野生型更严重。这些结果支持了植物截短型血红蛋白与细菌截短型血红蛋白具有清除NO功能和特性的假说。

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