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Markedly different gene expression in wheat grown with organic or inorganic fertilizer

机译:有机或无机肥料种植的小麦中的基因表达明显不同

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摘要

Nitrogen is the major determinant of crop yield and quality and the precise management of nitrogen fertilizer is an important issue for farmers and environmentalists. Despite this, little is known at the level of gene expression about the response of field crops to different amounts and forms of nitrogen fertilizer. Here we use expressed sequence tag (EST)-based wheat microarrays in combination with the oldest continuously running agricultural experiment in the world to show that gene expression is significantly influenced by the amount and form of nitrogenous fertilizer. In the Broadbalk winter wheat experiment at Rothamsted in the United Kingdom and at three other diverse test sites, we show that specific genes have surprisingly different expression levels in the grain endosperm when nitrogen is supplied either in an organic or an inorganic form. Many of the genes showing differential expression are known to participate in nitrogen metabolism and storage protein synthesis. However, others are of unknown function and therefore represent new leads for future investigation. Our observations show that specific gene expression is diagnostic for use of organic sources of nitrogen fertilizer and may therefore have useful applications in defining the differences between organically and conventionally grown wheat.
机译:氮是决定作物产量和质量的主要因素,而氮肥的精确管理对农民和环保主义者来说是重要的问题。尽管如此,在基因表达水平上关于大田作物对不同数量和形式的氮肥的反应的了解甚少。在这里,我们将基于表达序列标签(EST)的小麦微阵列与世界上最古老的连续运行的农业实验结合使用,以表明基因表达受氮肥含量和形式的显着影响。在英国Rothamsted和其他三个不同的试验地点进行的Broadbalk冬小麦试验中,我们表明,当以有机或无机形式提供氮时,特定基因在籽粒胚乳中的表达水平出乎意料地不同。已知许多显示差异表达的基因参与氮代谢和贮藏蛋白合成。但是,其他的功能未知,因此代表了未来研究的新线索。我们的观察结果表明,特定的基因表达可以诊断氮肥有机源的使用,因此在确定有机小麦与传统小麦之间的差异方面可能具有有用的应用。

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