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首页> 外文期刊>Journal of Natural Science Biology and Medicine >Insights from computational analysis of full-length β-ketoacyl-[ACP] synthase-II cDNA isolated from American and African oil palms
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Insights from computational analysis of full-length β-ketoacyl-[ACP] synthase-II cDNA isolated from American and African oil palms

机译:从美国和非洲油棕的全长β-酮酰基-[ACP]合酶-II cDNA的计算分析中获得的见解

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Background:Palm oil derived from fruits (mesocarp) of African oil palm (Elaeis guineensis Jacq. Tenera) and American oil palm (E. oleifera) is important for food industry. Due to high yield, Elaeis guineensis (Tenera) is cultivated on commercial scale, though its oil contains high (~54%) level of saturated fatty acids. The rate-limiting activity of beta-ketoacyl-[ACP] synthase-II (KAS-II) is considered mainly responsible for the high (44%) level of palmitic acid (C16:0) in the oil obtained from E. guineensis.Objective:The objective of this study was to annotate KAS-II cDNA isolated from American and African oil palms.Materials and Methods:The full-length E. oleifera KAS-II (EoKAS-II) cDNA clone was isolated using random method of gene isolation. Whereas, the E. guineensis KAS-II (EgTKAS-II) cDNA was isolated using reverse transcriptase polymerase chain reaction (RT-PCR) technique; and missing ends were obtained by employing 5’and 3’ RACE technique.Results:The results show that EoKAS-II and EgTKAS-II open reading frames (ORFs) are of 1689 and 1721 bp in length, respectively. Further analysis of the both EoKAS-II and EgTKAS-II predicted protein illustrates that they contains conserved domains for ‘KAS-I and II’, ‘elongating’ condensing enzymes, ‘condensing enzymes super-family’, and ‘3-oxoacyl-[ACP] synthase II’. The predicted protein sequences shows 95% similarity with each other. Consecutively, the three active sites (Cys, His, and His) were identified in both proteins. However, difference in positions of two active Histidine (His) residues was noticed.Conclusion:These insights may serve as the foundation in understanding the variable activity of KAS-II in American and African oil palms; and cDNA clones could be useful in the genetic engineering of oil palms.
机译:背景:源自非洲油棕(Elaeis guineensis Jacq。Tenera)和美国油棕(E. oleifera)的果实(中果皮)的棕榈油对食品工业非常重要。由于其高产量,尽管油中含有高水平(〜54%)的饱和脂肪酸,但还是以商业规模进行种植。 β-酮酰基-[ACP]合酶-II(KAS-II)的限速活性被认为主要负责从几内亚大肠杆菌获得的油中棕榈酸(C16:0)的高含量(44%)。目的:对从美洲和非洲油棕中分离出的KAS-II cDNA进行注释。材料与方法:利用基因随机方法分离出全长的油橄榄KAS-II(EoKAS-II)cDNA克隆。隔离。然而,使用逆转录聚合酶链反应(RT-PCR)技术分离了几内亚大肠杆菌(E. guineensis)KAS-II(EgTKAS-II)cDNA。结果:结果表明,EoKAS-II和EgTKAS-II开放阅读框(ORF)的长度分别为1689和1721 bp。对EoKAS-II和EgTKAS-II预测蛋白的进一步分析表明,它们包含“ KAS-I和II”,“延伸”缩合酶,“缩合酶超家族”和“ 3-氧代酰基-[ ACP]合酶II'。预测的蛋白质序列显示出彼此95%的相似性。连续地,在两种蛋白质中都鉴定出三个活性位点(Cys,His和His)。然而,注意到两个活性组氨酸(His)残基的位置不同。结论:这些见解可作为理解KAS-II在美国和非洲油棕中可变活性的基础; cDNA克隆可用于油棕的基因工程。

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