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Gene Expression Biomarkers Provide Sensitive Indicators of in Planta Nitrogen Status in Maize

机译:基因表达生物标志物提供了玉米植株氮含量的敏感指标

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摘要

Over the last several decades, increased agricultural production has been driven by improved agronomic practices and a dramatic increase in the use of nitrogen-containing fertilizers to maximize the yield potential of crops. To reduce input costs and to minimize the potential environmental impacts of nitrogen fertilizer that has been used to optimize yield, an increased understanding of the molecular responses to nitrogen under field conditions is critical for our ability to further improve agricultural sustainability. Using maize (Zea mays) as a model, we have characterized the transcriptional response of plants grown under limiting and sufficient nitrogen conditions and during the recovery of nitrogen-starved plants. We show that a large percentage (approximately 7%) of the maize transcriptome is nitrogen responsive, similar to previous observations in other plant species. Furthermore, we have used statistical approaches to identify a small set of genes whose expression profiles can quantitatively assess the response of plants to varying nitrogen conditions. Using a composite gene expression scoring system, this single set of biomarker genes can accurately assess nitrogen responses independently of genotype, developmental stage, tissue type, or environment, including in plants grown under controlled environments or in the field. Importantly, the biomarker composite expression response is much more rapid and quantitative than phenotypic observations. Consequently, we have successfully used these biomarkers to monitor nitrogen status in real-time assays of field-grown maize plants under typical production conditions. Our results suggest that biomarkers have the potential to be used as agronomic tools to monitor and optimize nitrogen fertilizer usage to help achieve maximal crop yields.
机译:在过去的几十年中,农业生产的提高一直受到改良的农艺方法的推动,以及使用含氮肥料以最大程度地提高农作物的增产潜力。为了降低投入成本并最大程度地减少用于优化产量的氮肥对环境的潜在影响,对田间条件下氮素分子响应的深入了解对于我们进一步改善农业可持续性的能力至关重要。使用玉米(Zea mays)作为模型,我们表征了在有限和充足的氮条件下以及在氮缺乏植物的恢复过程中生长的植物的转录反应。我们表明,玉米转录组中有很大一部分(大约7%)对氮有响应,这与以前在其他植物物种中的观察结果相似。此外,我们已经使用统计方法来鉴定一小组基因,这些基因的表达谱可以定量评估植物对变化的氮条件的响应。使用复合基因表达评分系统,这套生物标志物基因组可以独立于基因型,发育阶段,组织类型或环境,包括在受控环境下或田间种植的植物中,准确地评估氮素响应。重要的是,生物标志物的复合表达反应比表型观察要快得多和定量得多。因此,我们已经成功地使用这些生物标记物在典型生产条件下,在田间种植的玉米植物的实时测定中监测氮的状况。我们的结果表明,生物标记物有可能被用作农艺工具,以监测和优化氮肥的使用,以帮助实现最大的农作物产量。

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