The potential of metabolomics in assessing global compositional changes resulting from the application of CRISPR/Cas9 technologies.

IF 2.7 3区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS Transgenic Research Pub Date : 2023-08-01 DOI:10.1007/s11248-023-00347-9
Margit Drapal, Eugenia M A Enfissi, Juliana Almeida, Elzbieta Rapacz, Marilise Nogueira, Paul D Fraser
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Abstract

Exhaustive analysis of genetically modified crops over multiple decades has increased societal confidence in the technology. New Plant Breeding Techniques are now emerging with improved precision and the ability to generate products containing no foreign DNA and mimic/replicate conventionally bred varieties. In the present study, metabolomic analysis was used to compare (i) tobacco genotypes with and without the CRISPR associated protein 9 (Cas9), (ii) tobacco lines with the edited and non-edited DE-ETIOLATED-1 gene without phenotype and (iii) leaf and fruit tissue from stable non-edited tomato progeny with and without the Cas9. In all cases, multivariate analysis based on the difference test using LC-HRMS/MS and GC-MS data indicated no significant difference in their metabolomes. The variations in metabolome composition that were evident could be associated with the processes of tissue culture regeneration and/or transformation (e.g. interaction with Agrobacterium). Metabolites responsible for the variance included quantitative changes of abundant, well characterised metabolites such as phenolics (e.g. chlorogenic acid) and several common sugars such as fructose. This study provides fundamental data on the characterisation of gene edited crops, that are important for the evaluation of the technology and its assessment. The approach also suggests that metabolomics could contribute to routine product-based analysis of crops/foods generated from New Plant Breeding approaches.

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代谢组学在评估CRISPR/Cas9技术应用导致的全球成分变化中的潜力
几十年来对转基因作物的详尽分析增加了社会对这项技术的信心。新的植物育种技术正在出现,其精度和生产不含外源DNA的产品的能力得到了提高,并模仿/复制了传统育种品种。在本研究中,利用代谢组学分析比较了(i)带有和不带有CRISPR相关蛋白9 (Cas9)的烟草基因型,(ii)带有编辑过的和不带有表型的de - etiolate -1基因的烟草系,以及(iii)带有和不带有Cas9的稳定的未编辑的番茄后代的叶片和果实组织。在所有病例中,基于LC-HRMS/MS和GC-MS数据差异检验的多变量分析显示,他们的代谢组没有显著差异。代谢组组成的明显变化可能与组织培养、再生和/或转化过程有关(例如与农杆菌的相互作用)。造成差异的代谢物包括大量的、特征明确的代谢物的数量变化,如酚类物质(如绿原酸)和几种常见的糖,如果糖。这项研究为基因编辑作物的特性提供了基础数据,这对该技术的评价及其评估是重要的。该方法还表明,代谢组学可以为新植物育种方法产生的作物/食品的常规产品分析做出贡献。
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来源期刊
Transgenic Research
Transgenic Research 生物-生化研究方法
CiteScore
5.40
自引率
0.00%
发文量
38
审稿时长
4-8 weeks
期刊介绍: Transgenic Research focusses on transgenic and genome edited higher organisms. Manuscripts emphasizing biotechnological applications are strongly encouraged. Intellectual property, ethical issues, societal impact and regulatory aspects also fall within the scope of the journal. Transgenic Research aims to bridge the gap between fundamental and applied science in molecular biology and biotechnology for the plant and animal academic and associated industry communities. Transgenic Research publishes -Original Papers -Reviews: Should critically summarize the current state-of-the-art of the subject in a dispassionate way. Authors are requested to contact a Board Member before submission. Reviews should not be descriptive; rather they should present the most up-to-date information on the subject in a dispassionate and critical way. Perspective Reviews which can address new or controversial aspects are encouraged. -Brief Communications: Should report significant developments in methodology and experimental transgenic higher organisms
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