Li Bin, Shen Xiaochen
Beijing Research Center for Information Technology in Agriculture Beijing China.
Food Sci Nutr. 2020 Aug 27;8(10):5426-5433. doi: 10.1002/fsn3.1846. eCollection 2020 Oct.
Presence of genetically modified (GM) organisms is considered to be controversial by legislation and public. It is very important to develop detection methods for early discriminations. Conventional gene detection methods, including protein detection (PCR, ELISA, and so on) and DNA detection (Southern blot, GC/MS, and so on), have the disadvantages of high costs, time-consuming, complex operations, and destructive of the samples. Terahertz spectroscopy (THz) is a brand-new radiation with many unique advantages. Most biological macromolecules have fingerprint characteristics in THz band from the current recognition. In this study, feasibility of identifying the transgenic cotton seeds from nontransgenic counterparts using THz spectroscopy method was investigated. The transgenic cotton seeds-Lumianyan No.28 and nontransgenic cotton seeds-Xinluzao No.51 were selected and the sample-making methods were studied; then the refractive and absorption curves of samples were got and given a detailed discussion; finally, absorption index of transgenic and nontransgenic DNA was observed and discussed. The results showed there were small fluctuations in THz band, and refractive index of transgenic seeds was lower than nontransgenic ones and had obvious turning point at 1.4-2.0 THz region. There were significant peaks in 1.0-1.2 and 1.3-1.5 THz regions for the transgenic cotton seeds. Transgenic DNA had higher absorption index than nontransgenic DNA, and there were 3-4 peaks corresponding to the cotton seed samples in 1.0-1.6 THz region. These results showed cotton seeds samples can provide important bio-information in THz band, and this study provided a basis for developing potential THz-based gene detection technologies.
转基因生物的存在在立法和公众层面都颇具争议。开发早期鉴别检测方法至关重要。传统的基因检测方法,包括蛋白质检测(如聚合酶链式反应、酶联免疫吸附测定等)和DNA检测(如Southern印迹法、气相色谱/质谱联用等),存在成本高、耗时、操作复杂以及对样品有破坏性等缺点。太赫兹光谱(THz)是一种具有诸多独特优势的全新辐射。从目前的认知来看,大多数生物大分子在太赫兹波段具有指纹特征。本研究探讨了利用太赫兹光谱法从非转基因棉花种子中鉴别转基因棉花种子的可行性。选取了转基因棉花种子鲁棉研28号和非转基因棉花种子新陆早51号,并研究了制样方法;然后获取了样品的折射和吸收曲线并进行了详细讨论;最后观察并讨论了转基因和非转基因DNA的吸收指数。结果表明,在太赫兹波段存在小的波动,转基因种子的折射率低于非转基因种子,且在1.4 - 2.0太赫兹区域有明显转折点。转基因棉花种子在1.0 - 1.2和1.3 - 1.5太赫兹区域有显著峰值。转基因DNA的吸收指数高于非转基因DNA,在1.0 - 1.6太赫兹区域有3 - 4个与棉花种子样品对应的峰值。这些结果表明棉花种子样品在太赫兹波段能提供重要的生物信息,本研究为开发潜在的基于太赫兹的基因检测技术提供了依据。