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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Alteration of the fatty acid composition of Brassica napus L. via overexpression of phospholipid: Diacylglycerol acyltransferase 1 from Sapium sebiferum (L.) Roxb.
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Alteration of the fatty acid composition of Brassica napus L. via overexpression of phospholipid: Diacylglycerol acyltransferase 1 from Sapium sebiferum (L.) Roxb.

机译:通过磷脂过表达的脂肪酸组成的脂肪酸组成的改变:二酰基甘油酰基转移酶1来自Sabiumerum(L.)Roxb。

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摘要

Sapium sebiferum (L.) Roxb. plays an important role in traditional Chinese medicine and is one of major woody oil tree in China. Phospholipid: diacylglycerol acyltransferase 1 (PDAT1), as an important catalytic enzyme for the formation of triacylglycerol (TAG), is mainly responsible for the transfer of an acyl group from the sn-2 position of phospholipids to the sn-3 position of sn-1, 2-diacylglycerol (DAG) to produce TAG and sn-1 lysophospholipids. The importance of PDAT1 in triacylglycerol biosynthesis has been illustrated in previous research, and at least 67 PDAT1 sequences have been identified from 31 organisms. However, little is known about the gene encoding PDAT1 in S. sebiferum (SsPDAT1), which is involved in seed oil biosynthesis. To explore the functional characteristics of SsPDAT1, we cloned and analyzed the full-length cDNA in the coding region of SsPDAT1, which consists of 2040 bp and encodes a putative protein of 680 amino acid (aa) residues. Thin-layer chromatography (TLC) analysis showed that recombinant SsPDAT1 could restore TAG accumulation in TAG-deficient mutant yeast (Saccharomyces cerevisiae) H1246, which revealed the enzyme activity of SsPDAT1. Moreover, transgenic Brassica napus L. W10 plants overexpressing SsPDAT1 showed significant increases of 19.6-28.9 % in linoleic acid levels but decreases of 27.3-37.1 % in linolenic acid. Furthermore, the total oil content increased by 8.1 %-10.8 % in SsPDAT1 transgenic seeds. These results confirmed the role of SsPDAT1 in stabilizing oil biosynthesis and suggested that SsPDAT1 could be exploitable to specifically regulate the oil composition of plants. These experimental results provide a new concept that may enable the industrial development of plants with high-linoleic-acid oil through overexpression of SsPDAT1 in S. sebiferum L.
机译:Sapium sebiferum(L.)roxb。在中医中发挥着重要作用,是中国的主要木质油树之一。磷脂:二酰基甘油酰基转移酶1(PDAT1)作为用于形成三酰基甘油(标签)的重要催化酶,主要是负责从磷脂的SN-2位置转移到SN-3位置的SN-3位置1,2-二酰基甘油(DAG)产生标签和Sn-1溶血磷脂。在先前的研究中,已经说明了PDAT1在三酰基甘油生物合成中的重要性,并且已经从31个生物中鉴定了至少67个PDAT1序列。然而,关于编码SPDAT1的基因少几乎是涉及种子油生物合成的PDAT1的基因。为了探讨SSPDAT1的功能特性,我们克隆并分析了SSPDAT1编码区中的全长cDNA,其由2040bp组成,并编码680个氨基酸(AA)残基的调用蛋白质。薄层色谱(TLC)分析表明,重组SSPDAT1可以恢复标签缺陷型突变体酵母(Saccharomyces Cerevisiae)H1246中的标签积聚,这揭示了SSPDAT1的酶活性。此外,过表达SSPDAT1的转基因芸苔L.W10植物在亚油酸水平中显示出19.6-28.9%的显着增加,但亚麻酸中的27.3-37.1%降低。此外,SSPDAT1转基因种子中的总油含量增加了8.1%-10.8%。这些结果证实了SSPDAT1在稳定油脂合成中的作用,并建议SSPDAT1可以利用,以具体调节植物的油组成。这些实验结果提供了一种新的概念,可以通过SSPDAT1在SPDAT1中的SSPDAT1的过度表达来实现植物的产业开发。

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