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首页> 外文期刊>Acta Physiologiae Plantarum >Comparative metabolic profiling of four transgenic maize lines and two non-transgenic maize lines using high-performance liquid chromatography mass spectrometry
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Comparative metabolic profiling of four transgenic maize lines and two non-transgenic maize lines using high-performance liquid chromatography mass spectrometry

机译:四种转基因玉米系的比较代谢分析和使用高效液相色谱法质谱法的两条非转基因玉米线

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We compared metabolic changes in transgenic maize lines (differing in genetic backgrounds and exogenous genes insertion) with non-transgenic counterparts. At the corn seedling stage, entirely expanding leaves were obtained from maize lines 1 (transgenic maize SK12-5; overexpressing cry1Ab/cry2Aj; parental maize ZD958), 2 (transgenic maize IE034; overexpressing cry1Ie; parental maize ZD958), 3 (transgenic maize Bt799; overexpressing cry1Ac-M; parental maize Z58), 4 (transgenic maize Bt799; overexpressing cry1Ac-M; parental maize ZD958), 5 (non-transgenic maize Z58), and 6 (non-transgenic maize ZD958). For each line, six biological replicates were prepared; each contained an entirely expanded leaf at the top of the plant. Metabolites were identified with high-performance liquid chromatography mass spectrometry in three comparison groups (4 transgenic maize lines vs. their corresponding controls, line 3 vs. 4, and transgenic vs. non-transgenic maize). Top 200 cationic and top 200 anionic metabolites with higher variable importance in projection value were chosen for principal component analysis, followed by pathway enrichment analysis. Annotation was possible for 227 of 400 metabolites. Twelve up- and 26 down-regulated overlapping metabolites were identified in line 1 vs. 6, line 2 vs. 6, and line 4 vs. 6 comparison groups. Altered metabolites significantly enriched in purine and glutathione metabolism pathways, but no pathways were enriched in line 3 vs. 4. Comparing transgenic and non-transgenic maize lines revealed 59 up- and 37 down-regulated metabolites, which were also significantly enriched in purine and glutathione metabolism pathways. Therefore, transgenic Bt maize differed metabolically from non-transgenic maize. Additionally, purine and glutathione metabolism pathways may be important in the transgenic maize metabolism.
机译:我们将转基因玉米线(在遗传背景和外源基因插入不同)中的代谢变化与非转基因对应物进行了比较。在玉米苗期,从玉米线1获得完全扩张的叶子(转基因玉米SK12-5;过表达Cry1ab / Cry2aj;父母玉米ZD958),2(转基因玉米IEO34;过表达Cry1ie;祖先玉米ZD958),3(转基因玉米BT799;过表达Cry1ac-M;祖母玉米Z58),4(转基因玉米BT799;过表达Cry1Ac-M;祖先玉米ZD958),5(非转基因玉米Z58)和6(非转基因玉米ZD958)。对于每一线,准备了六种生物重复;每个都包含在植物顶部的完全膨胀的叶子。在三个比较基团中用高效液相色谱质谱法鉴定代谢物(4种转基因玉米与其相应的对照,第3行和转基因与非转基因玉米)。选择主要成分分析的前200名阳离子和前200个阴离子代谢物,具有更高的投影值的投影值,其次是途径富集分析。 400个代谢物中的227个可能的注释。在1与6,第2和第6行和第4行与6分段中鉴定了12个上调和26个下调的重叠代谢物。改变的代谢物在嘌呤和谷胱甘肽代谢途径中显着富集,但没有致途径在3.4线中富集。比较转基因和非转基因玉米线揭示了59个上调和37个下调的代谢物,其也显着富集嘌呤和纯化谷胱甘肽新陈代谢途径。因此,转基因Bt玉米从非转基因玉米代谢不同。另外,嘌呤和谷胱甘肽代谢途径在转基因玉米代谢中可能是重要的。

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