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首页> 外文期刊>Physiology and Molecular Biology of Plants >Arabidopsis mutant plants with diverse defects in polyamine metabolism show unequal sensitivity to exogenous cadaverine probably based on their spermine content.
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Arabidopsis mutant plants with diverse defects in polyamine metabolism show unequal sensitivity to exogenous cadaverine probably based on their spermine content.

机译:在多胺代谢中具有多种缺陷的拟南芥突变体植物,其精胺含量与其对外源尸胺的敏感性不同。

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摘要

Arabidopsis plants do not synthesize the polyamine cadaverine, a five carbon-chain diamine and structural analog of putrescine. Mutants defective in polyamine metabolic genes were exposed to exogenous cadaverine. Spermine-deficient spms mutant grew well while a T-DNA insertion mutant (pao4-1) of polyamine oxidase (PAO) 4 was severely inhibited in root growth compared to wild type (WT) or other pao loss-of-function mutants. To understand the molecular basis of this phenomenon, polyamine contents of WT, spms and pao4-1 plants treated with cadaverine were analyzed. Putrescine contents increased in all the three plants, and spermidine contents decreased in WT and pao4-1 but not in spms. Spermine contents increased in WT and pao4-1. As there were good correlations between putrescine (or spermine) contents and the degree of root growth inhibition, effects of exogenously added putrescine and spermine were examined. Spermine mimicked the original phenomenon, whereas high levels of putrescine evenly inhibited root growth, suggesting that cadaverine-induced spermine accumulation may explain the phenomenon. We also tested growth response of cadaverine-treated WT and pao4-1 plants to NaCl and found that spermine-accumulated pao4-1 plant was not NaCl tolerant. Based on the results, the effect of cadaverine on Arabidopsis growth and the role of PAO during NaCl stress are discussed.
机译:拟南芥植物不能合成多胺尸胺,五碳链二胺和腐胺的结构类似物。多胺代谢基因缺陷的突变体暴露于外源尸胺。与野生型(WT)或其他功能丧失的突变体相比,精胺缺陷型spms突变体生长良好,而聚胺氧化酶(PAO)4的T-DNA插入突变体(pao4-1)则在根部生长受到严重抑制。为了了解这种现象的分子基础,分析了尸胺处理的野生型,spms和pao4-1植物的多胺含量。在所有三种植物中,腐胺的含量均增加,而WT和pao4-1中亚精胺的含量却降低了,而在spms中则没有。 WT和pao4-1中精胺含量增加。由于腐胺(或精胺)含量与根生长抑制程度之间具有良好的相关性,因此研究了外源添加腐胺和精胺的作用。精胺模仿了原始现象,而高水平的腐胺均匀地抑制了根的生长,表明尸胺诱导的精胺积累可以解释这种现象。我们还测试了尸胺处理的WT和pao4-1植物对NaCl的生长反应,发现精胺积累的pao4-1植物不耐NaCl。根据结果​​,讨论了尸胺对拟南芥生长的影响以及PAO在NaCl胁迫下的作用。

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