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Accelerated ageing induces physiological and biochemical changes in tomato seeds involving MAPK pathways

机译:加速老龄化诱导涉及MAPK途径的番茄种子的生理和生化变化

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摘要

This study was performed to explore the accelerated ageing induced biochemical changes in tomato seeds, as little is known about its regulatory mechanisms. Arrays of factors were explored including Physiological parameters (Germination percentage, seedling vigour, Vigour index), Biochemical parameters (Determination of reducing sugar and soluble protein analysis, lipid peroxidation assay, enzymatic antioxidant system) and DNA extraction and analysis. Vigour and germination index declined with increased ageing period, whereas germination loss became more accentuate depicted by mean germination times. Growth parameters as length of root/shoot and weight (fresh/dry) also decreased with ageing. In aged seeds, increased glucose content indicated the occurrence of sugar hydrolysis. Consequently, Amadori products increased during ageing. Thiobarbituric acid reactive products (TBA) increased as a sign of the lipid peroxidation. Decrease in the antioxidant enzyme activity and soluble protein content suggested increased protein oxidation and loss of functional properties. DNA degradation was also illustrated by quantitative and qualitative analyses. Analysis of pivotal factor involved in stress signaling i.e. Mitogen-Activated Protein Kinases (MAPKs) was done for the first time in tomato seeds. Results showed the upregulation of two MAPKs i.e. MPK-3 and-6. The outcomes of the study suggest that network of various redox factors and signals contributes to the ageing in tomato seeds with the involvement of the MAPK pathway.
机译:进行该研究探讨了番茄种子的加速老化诱导的生化变化,因为其调节机制很少。探讨因素数组,包括生理参数(萌发百分比,幼苗活力,活力指数),生化参数(还原糖和可溶性蛋白质分析的测定,脂质过氧化测定,酶促抗氧化系统)和DNA提取和分析。活力和发芽指数随着年龄的增长时间增加而下降,而萌发损失变得更加强调,由平均发芽时间描述。随着根/芽和重量(新鲜/干)的生长参数也随着衰老的减少。在老化的种子中,增加的葡萄糖含量表明糖水解的发生。因此,Amadori产品在老化期间增加。硫氨基吡咯酸反应性产物(TBA)随着脂质过氧化的迹象而增加。降低抗氧化酶活性和可溶性蛋白质含量提出增加的蛋白质氧化和功能性的损失。还通过定量和定性分析说明DNA降解。涉及应力信号传导中涉及的枢转因子I.。在番茄种子中首次进行丝裂原激活蛋白激酶(MAPK)。结果表明,两个Mapks I.E.MPK-3和-6的上调。该研究的结果表明,各种氧化还原因子和信号的网络有助于Mapk途径的番茄种子衰老。

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