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Totomatix: a novel automatic set-up to control diurnal, diel and long-term plant nitrate nutrition

机译:Totomatix:一种新颖的自动装置,可控制昼夜,长期和长期的植物硝酸盐营养

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Background Stand-alone nutritional set-ups are useful tools to grow plants at defined nutrient availabilities and to measure nutrient uptake rates continuously, in particular that for nitrate. Their use is essential when the measurements are meant to cover long time periods. These complex systems have, however, important drawbacks, including poor long-term reliability and low precision at high nitrate concentration. This explains why the information dealing with diel dynamics of nitrate uptake rate is scarce and concerns mainly young plants grown at low nitrate concentration. Scope The novel system detailed in this paper has been developed to allow versatile use in growth rooms, greenhouses or open fields at nitrate concentrations ranging from a few micro-to several millimoles per litres. The system controls, at set frequencies, the solution nitrate concentration, pH and volumes. Nitrate concentration is measured by spectral deconvolution of UV spectra. The main advantages of the set-up are its low maintenance (weekly basis), an ability to diagnose interference or erroneous analyses and high precision of nitrate concentration measurements (0.025% at 3 mM). The paper details the precision of diurnal nitrate uptake rate measurements, which reveals sensitivity to solution volume at low nitrate concentration, whereas at high concentration, it is mostly sensitive to the precision of volume estimates. Conclusions This novel set-up allows us to measure and characterize the dynamics of plant nitrate nutrition at high temporal resolution (minutes to hours) over long-term experiments (up to 1 year). It is reliable and also offers a novel method to regulate up to seven N treatments by adjusting the daily uptake of test plants relative to controls, in variable environments such as open fields and glasshouses.
机译:背景技术独立的营养设置是有用的工具,可在确定的养分利用率下种植植物并连续测量养分吸收率,尤其是硝酸盐的吸收率。当测量要覆盖较长的时间时,必须使用它们。然而,这些复杂的系统具有重要的缺点,包括长期的可靠性差和在高硝酸盐浓度下的精度低。这就解释了为什么缺乏有关硝酸盐吸收速率的diel动态的信息,并且主要关注低硝酸盐浓度下生长的年轻植物。范围本文详细介绍的新颖系统已经开发,可以在硝酸盐浓度范围从每升几微摩尔到几毫摩尔的生长室,温室或露天场所中广泛使用。系统以设定的频率控制溶液中的硝酸盐浓度,pH和体积。硝酸盐浓度通过紫外光谱的光谱去卷积来测量。该装置的主要优点是维护成本低(每周一次),具有诊断干扰或错误分析的能力以及高精度的硝酸盐浓度测量值(3 mM时为0.025%)。本文详细介绍了昼间硝酸盐吸收速率测量的精度,这揭示了在硝酸盐浓度低时对溶液体积的敏感性,而在浓度较高时,它对体积估算的精度最敏感。结论这种新颖的设置使我们能够在长期的实验(长达1年)中以高时间分辨率(数分钟至数小时)测量和表征植物硝酸盐营养的动态。它是可靠的,并且还提供了一种新颖的方法,可以通过在相对变化的环境(例如开阔的田野和温室)中调节相对于对照的测试植物的日摄入量来调节多达7种氮素处理。

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