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Detection of nickel in maize roots: A novel nondestructive approach by reflectance spectroscopy and colorimetric models

机译:玉米根中镍的检测:反射光谱法和比色法的一种新型无损检测方法

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摘要

In this paper, a novel method capable of assessing nickel (Ni) uptake in intact plant roots is proposed and validated. Dimethylglyoxime (DMG) was used to stain roots of seven-day-old maize (Zea mays L.) seedlings grown in solutions containing 0, 0.025, 0.1, 0.2, and 0.5 mM Ni2+. A nondestructive approach by using reflectance spectroscopy and CIE XYZ and CIE L*a*b* color systems was used to investigate their optical properties. The maximum intensity in reflectance spectra at 545 nm (A(545)) was used to monitor the development of DMG Ni complexes. The values of A(545) were polynomially related to the concentration of Ni2+ in the growing solution (R-2 = 0.98), and significant correlations were also observed between A(545) and the two indicators of phytotoxicity, namely, root growth inhibition (I) and variations in the shoot-to-root ratio (S/R). The variation of dominant wavelength (lambda(d)) and excitation purity (P-e) graphically derived from the x, y color gamut in the CIE XYZ system paralleled the two highest Ni concentrations. Most of the color parameters in the CIE I,*a*b* system were closely related to both Ni2+ concentrations in plant growing medium and the values of (I) and (S/R) used here as markers of Ni toxicity. The revealed dependences confirm that the prelaminar method proposed here is capable of nondestructive estimating of Ni concentrations in intact root tissue. The values of A(545) in the reflectance spectra of stained roots and color parameters, namely, opponent redness greenness (a*), integral color difference (Delta E)*, lightness color difference (Delta L)*, and hue angle difference (Delta H)*, showed the highest potential for diagnostic purposes.
机译:本文提出并验证了一种能够评估完整植物根中镍(Ni)吸收量的新方法。二甲基乙二肟(DMG)用于染色在含0、0.025、0.1、0.2和0.5 mM Ni2 +的溶液中生长的7天龄玉米(Zea mays L.)幼苗的根。通过使用反射光谱法和CIE XYZ和CIE L * a * b *颜色系统的无损方法来研究它们的光学性能。 545 nm(A(545))的反射光谱中的最大强度用于监测DMG Ni配合物的发展。 A(545)的值与生长溶液中Ni2 +的浓度呈多项式关系(R-2 = 0.98),并且在A(545)与植物毒性的两个指标即根系生长抑制之间也存在显着相关性(I)和枝根比(S / R)的变化。从CIE XYZ系统中的x,y色域以图形方式得出的主波长(λ(d))和激发纯度(P-e)的变化与两个最高的Ni浓度平行。 CIE I,* a * b *系统中的大多数颜色参数都与植物生长培养基中的Ni2 +浓度以及此处用作Ni毒性标记的(I)和(S / R)值密切相关。揭示的依赖性证实了本文提出的层前方法能够无损估计完整根组织中的镍浓度。染色的根的反射光谱中的A(545)值和颜色参数,即对手红色,绿色(a *),积分色差(Delta E)*,明度色差(Delta L)*和色相角差(ΔH)*,显示出最高的诊断潜力。

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