College of Life and Environmental Sciences, Centre for Imaging & Systems Biology, Minzu University of China, Beijing 100081, China.
Nanjing Institute of Environmental Sciences, Ministry of Ecology and Environment, Nanjing 210042, China.
J Agric Food Chem. 2023 Jul 5;71(26):10190-10202. doi: 10.1021/acs.jafc.3c01377. Epub 2023 Jun 15.
Herbicide-resistant soybeans are among the most widely planted transgenic crops. The evaluation of spatial lipidomics in transgenic and non-transgenic soybeans is important for directly assessing the unintended effects of exogenous gene introduction. In this study, matrix-assisted laser desorption/ionization mass spectrometry imaging (MALDI-MSI)-based non-targeted analytical strategies were used for the first time for detection and imaging of endogenous lipid distributions in transgenic ( and genes) herbicide-resistant soybean ( Merrill) (S4003.14) and non-transgenic soybean (JACK) seeds. Statistical analysis revealed significant differences in lipids between S4003.14 and JACK seeds. The variable importance of projection analysis further revealed that 18 identified lipids, including six phosphatidylcholines (PCs), four phosphatidylethanolamines (PEs), five triacylglycerols (TAGs), and three cytidine diphosphate-diacylglycerols (CDP-DAGs), had the strongest differential expression between S4003.14 and JACK seeds. Among those, the upregulated expressions of PC(P-36:1), PC(36:2), PC(P-36:0), PC(37:5), PE(40:2), TAG(52:1), TAG(55:5), and CDP-DAG(37:2) and the downregulated expressions of PC (36:1), TAG(43:0), and three PEs (, PE(P-38:1), PE(P-38:0), and PE(P-40:3)) were successfully found in the S4003.14 seeds, compared to these lipids detected in the JACK seeds. Meanwhile, the lipids of PC (44:8), CDP-DAG(38:0), and CDP-DAG(42:0) were uniquely detected in the S4003.14 soybean seeds, and TAG(45:2) and TAG(57:10) were detected as the unique lipids in the JACK seeds. The heterogeneous distribution of these lipids in the soybean seeds was also clearly visualized using MALDI-MSI. MSI results showed that lipid expression was significantly up/downregulated in S4003.14 seeds, compared to that in JACK seeds. This study improves our understanding of the unintended effects of herbicide-resistant and gene transfers on spatial lipidomes in soybean seeds and enables the continued progression of MALDI-MSI as an emerging, reliable, and rapid molecular imaging tool for evaluating unintended effects in transgenic plants.
抗除草剂大豆是种植最广泛的转基因作物之一。评估转基因和非转基因大豆的空间脂质组学对于直接评估外源基因导入的非预期影响非常重要。在这项研究中,首次使用基质辅助激光解吸/电离质谱成像(MALDI-MSI)为基础的非靶向分析策略来检测和成像转基因(和基因)抗除草剂大豆(Merrill)(S4003.14)和非转基因大豆(JACK)种子中的内源性脂质分布。统计分析显示,S4003.14 和 JACK 种子中的脂质存在显著差异。变量重要性投影分析进一步表明,在 S4003.14 和 JACK 种子之间,有 18 种鉴定出的脂质具有最强的差异表达,包括六种磷脂酰胆碱(PCs)、四种磷脂酰乙醇胺(PEs)、五种三酰基甘油(TAGs)和三种胞苷二磷酸-二酰基甘油(CDP-DAGs)。其中,PC(P-36:1)、PC(36:2)、PC(P-36:0)、PC(37:5)、PE(40:2)、TAG(52:1)、TAG(55:5)和 CDP-DAG(37:2)的上调表达以及 PC(36:1)、TAG(43:0)和三种 PEs(PE(P-38:1)、PE(P-38:0)和 PE(P-40:3))的下调表达在 S4003.14 种子中成功发现,而这些脂质在 JACK 种子中被检测到。同时,在 S4003.14 大豆种子中还独特地检测到 PC(44:8)、CDP-DAG(38:0)和 CDP-DAG(42:0),而在 JACK 种子中则检测到 TAG(45:2)和 TAG(57:10)为唯一的脂质。利用 MALDI-MSI 还可以清楚地观察到这些脂质在大豆种子中的异质分布。MALDI-MSI 结果表明,与 JACK 种子相比,S4003.14 种子中的脂质表达显著上调/下调。这项研究提高了我们对除草剂抗性和基因转移对大豆种子空间脂质组学的非预期影响的理解,并使 MALDI-MSI 作为一种新兴的、可靠的、快速的分子成像工具,继续用于评估转基因植物的非预期影响。