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Impact of solar Ultraviolet-B on the proteome in soybean lines differing in flavonoid contents

机译:太阳紫外线-B对大豆品系蛋白质组的影响不同于黄酮类化合物含量

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摘要

Two-dimensional polyacrylamide gel electrophoresis (2-D PAGE) was used to systematically investigate the impact of solar ultraviolet- B (UV-B) radiation on the soybean leaf proteome. In order to investigate the protective role of flavonoids against UV-B, two isolines of the Clark cultivar (the standard line with moderate levels of flavonoids and the magenta line with reduced flavonoids) were grown in the field with or without natural levels of UV-B. The 12-day-old first trifoliates were harvested for proteomic analysis. More than 300 protein spots were reproducibly resolved and detected on each gel. Statistical analysis showed that 67 protein spots were significantly (P \u3c 0.05) affected by solar UV-B. Many more spots were altered by UV-B in the magenta line than in the standard line. Another 12 protein spots were not altered by UV-B but showed significantly (P \u3c 0.05) different accumulations between the two lines, and for most spots the line-specific differences were also observed under UV-B exclusion. Most of the differentially accumulated spots were identified by mass spectrometry. The proteins were quite diverse, and were involved in metabolism, energy, protein destination/storage, protein synthesis, disease/defense, transcription, and secondary metabolism. The results suggest that high levels of flavonoids lead to a reduction in UV-B sensitivity at the proteomic level.
机译:使用二维聚丙烯酰胺凝胶电泳(2-D PAGE)系统研究了太阳紫外线B(UV-B)辐射对大豆叶片蛋白质组的影响。为了研究类黄酮对UV-B的保护作用,在有或没有自然水平的UV-B的田间种植了克拉克品种的两个等值线(具有中等水平黄酮的标准品系和具有减少的类黄酮的品红色品系)。 B.收获12天大的第一三叶草用于蛋白质组学分析。在每种凝胶上可重现地分离和检测到300多个蛋白质斑点。统计分析表明,有67个蛋白质斑点受到太阳UV-B的显着影响(P <0.05)。品红色行中的UV-B改变的斑点比标准行中的斑点多得多。另外12个蛋白斑点没有被UV-B改变,但显示了两条细胞之间的显着(P <0.05)积累,对于大多数斑点,在UV-B排斥下也观察到了细胞特异性差异。大部分差异积累的斑点通过质谱鉴定。蛋白质非常多样化,涉及代谢,能量,蛋白质目的地/存储,蛋白质合成,疾病/防御,转录和次级代谢。结果表明,高水平的类黄酮会导致蛋白质组水平的UV-B敏感性降低。

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