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在暴露于亚致死和致死盐胁迫的番茄中,精胺类似物MDL-72527对多胺氧化酶的体内抑制作用。

In vivo inhibition of polyamine oxidase by a spermine analogue, MDL-72527, in tomato exposed to sublethal and lethal salt stress.

作者信息

Takács Zoltán, Poór Péter, Szepesi Ágnes, Tari Irma

机构信息

Department of Plant Biology, University of Szeged, H-6726 Szeged, Közép Fasor 52, Hungary.

出版信息

Funct Plant Biol. 2017 May;44(5):480-492. doi: 10.1071/FP16280.

DOI:10.1071/FP16280
PMID:32480581
Abstract

The spermine analogue N1,N4-bis-(2,3-butadienyl)-1,4-butanediamine (MDL-72527), an effective inhibitor of polyamine oxidases (PAOs), triggers a systemic response in tomato (Solanum lycopersicum L.) exposed to sublethal (100mM) and lethal (250mM) NaCl concentrations. The accumulation of free polyamines (PAs), the terminal oxidation of PAs by diamine oxidases (DAOs) and PAOs, and the production of H2O2 by PA oxidases depends on the intensity of salt stress. Spermidine and spermine content increased significantly under sublethal salt concentrations, but remained low under lethal salt stress. Along with increased expression of the selected SlDAO1 and SlPAO1 genes in the leaves and roots, respectively, DAO and PAO activities and their product, H2O2, increased and initiated cell death by irreversible loss of electrolytes at 250mM NaCl. MDL-72527 significantly increased spermine, spermidine and/or putrescine contents as a result of reduced activity of PA oxidases; furthermore, it inhibited H2O2 and NO production during salt treatment. These results indicate that PAO contributed to H2O2 and NO production under salt stress, and the terminal activities of DAO and PAO play a role in cell death induction at 250mM NaCl. However, the inhibition of PAO by MDL-72527 does not increase the salt tolerance of plants, since electrolyte leakage increased significantly in the presence of the inhibitor.

摘要

精胺类似物N1,N4-双-(2,3-丁二烯基)-1,4-丁二胺(MDL-72527)是一种有效的多胺氧化酶(PAO)抑制剂,它能在番茄(Solanum lycopersicum L.)暴露于亚致死(100mM)和致死(250mM) NaCl浓度时引发系统反应。游离多胺(PAs)的积累、二胺氧化酶(DAOs)和PAOs对PAs的末端氧化以及PA氧化酶产生H2O2均取决于盐胁迫的强度。在亚致死盐浓度下,亚精胺和精胺含量显著增加,但在致死盐胁迫下则保持较低水平。随着所选SlDAO1和SlPAO1基因分别在叶片和根中的表达增加,DAO和PAO活性及其产物H2O2增加,并在250mM NaCl时通过电解质的不可逆损失引发细胞死亡。MDL-72527由于PA氧化酶活性降低而显著增加了精胺、亚精胺和/或腐胺的含量;此外,它还抑制了盐处理过程中H2O2和NO的产生。这些结果表明,PAO在盐胁迫下促进了H2O2和NO的产生,并且DAO和PAO的末端活性在250mM NaCl时诱导细胞死亡中起作用。然而,MDL-72527对PAO的抑制并没有提高植物的耐盐性,因为在抑制剂存在下电解质渗漏显著增加。

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