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Polyamine metabolism and biosynthetic gene expression in Arabidopsis thaliana under salt stress.

机译:盐胁迫下拟南芥中的多胺代谢和生物合成基因表达。

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In the present study we analysed polyamine metabolism in Arabidopsis thaliana (ecotype Columbia) rosette leaves collected at vegetative and reproductive stages from plants germinated and grown under increasing salt stress (0-75 mM NaCl) conditions. The expression level of the different isoforms of polyamine biosynthetic enzymes was analysed by reverse transcriptase-polymerase chain reaction (RT-PCR) and the polyamine biosynthetic enzyme activities were determined both in supernatant and pellet fractions. Free and perchloric acid (PCA)-conjugated (soluble and insoluble) polyamines, were measured. At vegetative stage, plants were able to adapt up to 50 mM NaCl, showing a significant growth inhibition only at 75 mM NaCl. At this growth stage and NaCl concentration there was an up-regulation of spermine biosynthesis. At reproductive stage, plants were able to flower up to 50 mM NaCl, even if with a delay of 7 days. On the contrary, at 75 mM NaCl two different phenotypes were isolated: 75/01 (salt sensitive) and 75/02 (salt tolerant). The sensitive plants (75/01) showed a severely stressed phenotype, compared to the tolerant ones (75/02), and the polyamine metabolism was up-regulated, with the increase of free putrescine and spermine..
机译:在本研究中,我们分析了从拟南芥(营养型和生殖型)玫瑰花叶中的多胺代谢,这些叶是在营养和生殖阶段从盐胁迫(0-75 mM NaCl)增加的条件下发芽和生长的植物中收集的。通过逆转录聚合酶链反应(RT-PCR)分析多胺生物合成酶不同同工型的表达水平,并测定上清液和沉淀级分中的多胺生物合成酶活性。测量了游离和高氯酸(PCA)共轭(可溶和不可溶)的多胺。在营养阶段,植物能够适应高达50 mM的NaCl,仅在75 mM的NaCl时显示出显着的生长抑制作用。在这个生长阶段和NaCl浓度,精胺的生物合成有一个上调。在生殖阶段,即使延迟7天,植物也能开花至50 mM NaCl。相反,在75 mM NaCl时,分离出两种不同的表型:75/01(对盐敏感)和75/02(对盐耐受)。与耐性植物(75/02)相比,敏感植物(75/01)表现出严重的表型,并且多胺代谢随游离腐胺和精胺的增加而上调。

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