高产玉米杂交种籽粒红外光谱低强度波段的研究

Č. Radenović, G. Maksimov, O. Slatinskaya, F. Protopopov, N. Delić, J. Pavlov, A. Popović, M. Sečanski
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引用次数: 0

摘要

低强度光谱带的性质、作用和意义?对高产玉米杂交种zp341、zp434和zp505的籽粒红外光谱进行了分析。进行观察是为了确定或?有机分子及其结构性质。有机化合物及其官能团的不稳定状态的发生是由这一过程决定的。集合假设?他认为有必要研究目前尚未观测到的以不同模式(低强度波段,单个或组)出现的许多低强度光谱带的存在。应观察它们,并解释由它们的不同运动引起的它们形成的动力学,包括它们消除或放大的可能性。这种光谱带最常出现在400-950 cm-1的波数范围内。它们以高达3,000 cm-1的几个波数发生,由有机化合物及其官能团的不同类型的振动运动(价振动和变形振动)引起:一级、二级和三级酰胺、蛋白质、游离氨基酸、烷烃、烯烃、醛、酮、芳香族化合物、纤维素、碳水化合物、碳水化合物、碳水化合物和碳水化合物。羧酸、醚和醇。对玉米杂交种籽粒低强度光谱波段的无偏分析表明,它们的发生是相似的。对于低强度光谱带的某些情况,几乎无法确定微小的差异。通过这种方法,不仅可以确定所观察到的玉米杂交种籽粒有机化合物的化学组成,而且还可以指示它们的不稳定,confor?国家和功能属性。
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Study of the low intensity spectral bands within the infrared spectra of kernels of high-yielding maize hybrids
The nature, role, and significance of low intensity spectral bands con?tained within the infrared spectra of kernels of high-yielding maize hybrids: ZP 341, ZP 434, and ZP 505 were observed in this study. The observations were performed to identify or?ganic molecules and their structural properties. The occurrence of unstable state of organic compounds and their functional groups are conditioned by such a process. The set hypoth?esis holds that there is a necessity to study the existence of many and low intensity spectral bands, not observed so far, occurring in different patterns (low intensity bands, single or grouped). They should be observed and the dynamics of their formation, caused by their different movements, including the possibility of their cancellation or amplification, should be explained. Such spectral bands most often appear in the wave number range of 400-950 cm-1. They occur in several wave numbers up to 3,000 cm-1 and are caused by different types of vibration movements (valence and deformation vibrations) of organic compounds and their functional groups: primary, secondary, and tertiary amides, proteins, free amino acids, alkanes, alkenes, aldehydes, ketones, aromatic compounds, cellulose, carbohydrates, car?boxylic acids, ethers, and alcohols. An unbiased analysis of low intensity spectral bands of maize hybrid kernels reveals that their occurrence is similar. Small differences, for some cases of the occurrence of low intensity spectral bands, can barely be ascertained. In this way, it is possible to establish not only the chemical composition of organic compounds of kernels of observed maize hybrids, but also it is possible to indicate their unstable, confor?mational, and functional properties.
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