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Construction of a Ginseng Root-Meristem Sensor and a Sensing Kinetics Study on the Main Nitrogen Nutrients

机译:施工人参根部分生传感器和对主要氮营养素的传感动力学研究

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摘要

Severe continuous cropping obstacles exist in ginseng cultivation. In order to assess these obstacles, a “sandwich” ginseng root tissue sensor was developed for the kinetic determination of five nitrogen nutrients. The results showed that the sensing parameters of the sensor reached an ultrasensitive level (limit of detection up to 5.451 × 10−24 mol/L) for the five nitrogen nutrients, and exhibited good stability and reproducibility. In the order of two-, four-, and six-year-old ginseng plants, the sensitivity to inorganic nitrogen nutrients (sodium nitrate and urea) showed an upward trend following an initial decline (the interconnected allosteric constant Ka values acted as the parameter). The fluctuations in sensor sensitivity to organic nitrogen nutrients, specifically nucleotides (disodium inosinate and disodium guanylate), were relatively small. The sensor sensitivity of two-, four-, and six-year-old ginseng plants to sodium glutamate was 9.277 × 10−19 mol/L, 6.980 × 10−21 mol/L, and 5.451 × 10−24 mol/L, respectively. Based on the survival rate of the seedlings and mortality rate of the ginseng in each age group, a Hardy–Weinberg equilibrium analysis was carried out. The results showed that the sensing ability of the root system to sodium glutamate may be an important factor affecting its survival under continuous cropping obstacles with increasing age.
机译:人参栽培中存在严重的持续种植障碍。为了评估这些障碍,开发了“夹心”人参根组织传感器用于动力学测定五种氮营养素。结果表明,传感器的感测参数对于五个氮营养成分,传感器的传感参数达到超敏感水平(检测限度为5.451×10-24 mol / l),并表现出良好的稳定性和再现性。按照两年,四岁和六岁的人参植物的顺序,对初始下降后的对无机氮营养成分(硝酸钠和尿素)的敏感性显示出呈上升趋势(相互连接的变构常数Ka值作为参数。 )。传感器敏感性对有机氮营养素的波动,特别是核苷酸(杀毒酸二钠和胍酸二钠),相对较小。对谷氨酸钠的两个,四岁和六岁的人参植物的传感器敏感性为9.277×10-19mol / L,6.980×10-21 mol / L,5.451×10-24 mol / L,分别。基于每个年龄组中人参的幼苗的生存率和人参的死亡率,进行了哈迪 - Weinberg均衡分析。结果表明,根系对谷氨酸钠的传感能力可能是在持续种植障碍下越来越多的年龄而影响其存活的重要因素。

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