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Analysis of secondary metabolism and total chlorophyll content provides new insights into the role of A-tocopherol for wild type and VTE4 mutant Arabidopsis thaliana under different abiotic stresses

机译:二次新陈代谢分析和总叶绿素含量为野生型和VTE4突变体拟南芥的作用提供了新的洞察不同的非生物应激

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Plants experience different abiotic stresses under natural conditions including salinity, water deficit, low temperature and high light. Once plants are exposed to these stresses they might have a variety of responses physiologically and biochemically. In this study, we test this hypothesis in wild type Col-0 and vte4 mutant of Arabidopsis thaliana by measuring major secondary metabolites alongside with total chlorophyll content under different abiotic stresses namely salt stress, water stress and prolonged water deficiency. These stresses were imposed to the plants in separate experiments in which each treatment was replicated three times in a complete randomized design with factorial arrangement. It was concluded that under all abiotic stresses wild type Col-0 Arabidopsis plants showed stronger performance in terms of all major metabolites compared to vte4 mutant. α-tocopherol deficiency in vte4 mutant plants led to lower accumulation of proline, total protein and total amino acids as well as starch and total sugars in comparison with wild type A. thaliana. Furthermore, all five secondary metabolites obtained the highest value under 100mM NaCl concentration (Salt stress), under 50% of field capacity (water stress) and under 8 days of water withholding (prolonged water deficiency). Wild type Col-0 resulted in higher level of total chlorophyll content under all abiotic stresses compared to mutant plants. Therefore, our results suggested that the loss of α-tocopherol in vte4 mutant A.thaliana under different abiotic stresses affected the efficiency and the stability of central metabolism and photosynthetic apparatus.
机译:植物在天然条件下经历不同的非生物胁迫,包括盐度,水缺水,低温和高光。一旦植物暴露于这些应力,它们可能会生理和生物化学的各种反应。在这项研究中,通过在不同的非生物应激下的总叶绿素含量以及盐胁迫下的总叶绿素含量以及盐胁迫下的总叶绿素含量以及延长的水缺乏,通过测量主要的次生代谢物,在野生型代谢物中测试了这一假设。在单独的实验中对植物施加了这些应力,其中每种处理在具有因子排列的完整随机设计中复制三次。得出结论,在所有非生物胁迫下,野生型Col-0拟南芥植物就与VTE4突变体相比,所有主要代谢物都表现出更强的性能。 VTE4突变植物中的α-生育酚缺乏导致脯氨酸,总蛋白质和总氨基酸的积累以及与野生型A型植物相比的淀粉和总糖。此外,所有五种次级代谢产物在100mM NaCl浓度(盐胁迫)下获得的最高值,在50%的场地容量(水胁迫)下,在8天的水预扣(延长的水缺乏)下。与突变植物相比,野生型COL-0导致所有非生物胁迫下的总叶绿素含量较高。因此,我们的结果表明,在不同的非生物应激下,VTE4突变体A.Thaliana中的α-生育酚的丧失影响了中枢代谢和光合仪的效率和稳定性。

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