首页> 外文期刊>American Journal of Plant Sciences >Cloning and Enzymatic Activity Analysis of the Malonyl-CoA:acyl Carrier Protein Transacylase in Brassica napus Cultivars with Different Oil Content
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Cloning and Enzymatic Activity Analysis of the Malonyl-CoA:acyl Carrier Protein Transacylase in Brassica napus Cultivars with Different Oil Content

机译:含油量不同的甘蓝型油菜品种丙二酰辅酶A:酰基载体蛋白转酰酶的克隆和酶活性分析

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The full-length genomic DNA of MCAT (Malonyl-CoA:acyl carrier protein transacylase) in Brassica napus was cloned. BnMCAT shares very high identity with AtMCAT in gene sequence and gene structure. A multiple alignment of the protein sequence showed that BnMCAT shares high identity with other MCATs from E. coli and plants. BnMCAT was expressed in all tissues, such as roots, stems, leaves, flowers, and seeds, and no significant differences in the expression level were found in different embryo stages after pollination. According to an in vitro relative activity analysis, purified recombinant BnMCAT expressed in E. coli had transacylase activity. Although the relative activities of BnMCAT in crude extracts isolated from different staged embryos were similar and showed little variation, a higher relative activity was found in a crude extract isolated from embryos in comparison to leaves. Different relative activities of BnMCAT in crude extracts isolated from cultivars with different oil content were also found, suggesting that the activity of BnMCAT might be a decisive factor for a high oil content. Together, these results showed that BnMCAT is an important enzyme in the FAS system and indicate that BnMCAT might be a new target enzyme for future crop improvement through genetic engineering.
机译:克隆了甘蓝型油菜中MCAT的全长基因组DNA(丙二酰辅酶A:酰基载体蛋白转酰酶)。 BnMCAT在基因序列和基因结构上与AtMCAT具有很高的同一性。蛋白质序列的多重比对表明,BnMCAT与来自大肠杆菌和植物的其他MCAT具有高度同一性。 BnMCAT在根,茎,叶,花和种子等所有组织中都有表达,授粉后不同胚胎阶段的表达水平没有明显差异。根据体外相对活性分析,在大肠杆菌中表达的纯化的重组BnMCAT具有转酰酶活性。尽管从不同阶段的胚胎中分离的粗提物中BnMCAT的相对活性相似且几乎没有变化,但与叶相比,从胚胎中分离的粗提物中发现了较高的相对活性。从含油量不同的品种中分离得到的粗提物中BnMCAT的相对活性也不同,这表明BnMCAT的活性可能是高含油量的决定性因素。总之,这些结果表明BnMCAT是FAS系统中的重要酶,并表明BnMCAT可能是通过基因工程改良未来作物的新靶标酶。

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