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Proteomic Approach to Screen Peanut Genotypes with Enhanced Nutritional Qualities

机译:增强营养品质的花生基因型筛选蛋白质组学方法

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Peanut is an important food legume grown in semiarid tropics of the world. Aspergillus fungus thrives in drought prevalent regions producing immunosuppressive carcinogenic aflatoxins in peanut seed. Identification and development of drought-tolerant genotype/s is the potential means to reduce aflatoxin contamination. We have determined differences in biochemical and molecular responses of peanut genotypes with varying degree of drought tolerance. Changes in protein and mRNA composition of seed in response to drought stress were measured using 2-Dimensional electrophoresis and Differential Display RT PCR. Mass spectroscopy analysis revealed down-regulation of methionine rich proteins (MRPs) and arachin proteins in drought- susceptible (DS) genotypes, while these proteins continue to express in drought-tolerant (DT) genotypes. Up-regulation of mRNA transcripts in DT genotypes indicated their association with stress tolerance. Continued expression of these proteins seems to enhance drought tolerance, reduce aflatoxin level and enhance nutritional value of peanut.
机译:花生是在世界上半干旱地区种植的重要食物豆科植物。曲霉属菌在干旱普遍的地区茁inflougent地区,在花生种子中产生免疫抑制致癌致癌毒素。耐旱基因型/ s的识别和开发是减少黄曲霉毒素污染的潜在手段。我们已经确定了不同程度的耐旱性耐受性的花生基因型的生化和分子反应的差异。使用二维电泳和微分显示RT PCR测量蛋白质和mRNA组成的种子蛋白质和mRNA组成。质谱分析揭示了甲硫氨酸富蛋白(MRP)和植物蛋白在干旱易受(DS)基因型中的调节,而这些蛋白质继续在耐旱(DT)基因型中表达。 DT基因型中mRNA转录物的上调表明它们与胁迫耐受性的关系。这些蛋白质的持续表达似乎增强了耐旱性,降低了降低过敏素水平并增强花生的营养价值。

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