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首页> 外文期刊>BMC Genomics >Identification of genes associated with the biosynthesis of unsaturated fatty acid and oil accumulation in herbaceous peony ‘Hangshao’ ( Paeonia lactiflora ‘Hangshao’) seeds based on transcriptome analysis
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Identification of genes associated with the biosynthesis of unsaturated fatty acid and oil accumulation in herbaceous peony ‘Hangshao’ ( Paeonia lactiflora ‘Hangshao’) seeds based on transcriptome analysis

机译:基于转录体分析的草本牡丹(芍药属植物园)种子(Paeonia Lactiflora'Hangshao')种子鉴定与未饱和脂肪酸和油积累相关的基因

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摘要

Paeonia lactiflora ‘Hangshao’ is widely cultivated in China as a traditional Chinese medicine ‘Radix Paeoniae Alba’. Due to the abundant unsaturated fatty acids in its seed, it can also be regarded as a new oilseed plant. However, the process of the biosynthesis of unsaturated fatty acids in it has remained unknown. Therefore, transcriptome analysis is helpful to better understand the underlying molecular mechanisms. Five main fatty acids were detected, including stearic acid, palmitic acid, oleic acid, linoleic acid and α-linolenic acid, and their absolute contents first increased and then decreased during seed development. A total of 150,156 unigenes were obtained by transcriptome sequencing. There were 15,005 unigenes annotated in the seven functional databases, including NR, NT, GO, KOG, KEGG, Swiss-Prot and InterPro. Based on the KEGG database, 1766 unigenes were annotated in the lipid metabolism. There were 4635, 12,304, and 18,291 DEGs in Group I (60 vs 30 DAF), Group II (90 vs 60 DAF) and Group III (90 vs 30 DAF), respectively. A total of 1480 DEGs were detected in the intersection of the three groups. In 14 KEGG pathways of lipid metabolism, 503 DEGs were found, belonging to 111 enzymes. We screened out 123 DEGs involved in fatty acid biosynthesis (39 DEGs), fatty acid elongation (33 DEGs), biosynthesis of unsaturated fatty acid (24 DEGs), TAG assembly (17 DEGs) and lipid storage (10 DEGs). Furthermore, qRT-PCR was used to analyze the expression patterns of 16 genes, including BBCP, BC, MCAT, KASIII, KASII, FATA, FATB, KCR, SAD, FAD2, FAD3, FAD7, GPAT, DGAT, OLE and CLO, most of which showed the highest expression at 45 DAF, except for DGAT, OLE and CLO, which showed the highest expression at 75 DAF. We predicted that MCAT, KASIII, FATA, SAD, FAD2, FAD3, DGAT and OLE were the key genes in the unsaturated fatty acid biosynthesis and oil accumulation in herbaceous peony seed. This study provides the first comprehensive genomic resources characterizing herbaceous peony seed gene expression at the transcriptional level. These data lay the foundation for elucidating the molecular mechanisms of fatty acid biosynthesis and oil accumulation for herbaceous peony.
机译:Paeonia Lactiflora'Hangshao'在中国广泛培育,作为中医“Radix Paeoniae Alba”。由于其种子中的丰富不饱和脂肪酸,它也可被视为新的油籽植物。然而,它在其中的不饱和脂肪酸的生物合成的方法仍然是未知的。因此,转录组分析有助于更好地理解潜在的分子机制。检测到五种主要脂肪酸,包括硬脂酸,棕榈酸,油酸,亚油酸和α-亚麻酸,它们的绝对内容物首先增加,然后在种子发育过程中降低。通过转录组测序获得总共150,156个unigenes。七个功能数据库中有15,005个未成年人,包括NR,NT,Go,Kog,Kegg,Swiss-Prot和Interpro。基于Kegg数据库,1766个unigenes在脂质代谢中注释。 I(60 vs 30 DAF),II组(90 vs 60 DAF)和III组(90 vs 30 DAF)分别有4635,12,304和18,291次。在三组的交叉点中检测到总共1480℃。在14 kegg脂质代谢的途径中,发现了503只次数,属于111个酶。我们筛选出123次参与脂肪酸生物合成(39℃),脂肪酸伸长(33℃),不饱和脂肪酸(24℃)的生物合成,标签组件(17℃)和脂质储存(10℃)。此外,QRT-PCR用于分析16个基因的表达模式,包括BBCP,BC,MCAT,KASIII,KASII,FATA,FATB,KCR,SAD,FAD2,FAD3,FAD7,GPAT,DGAT,OLE和CLO,最多其中显示了45个DAF的最高表达,除了DGAT,OLE和CLO,其显示在75个DAF的最高表达。我们预测MCAT,Kasiii,FATA,SAD,FAD2,FAD3,DGAT和OLE是草本牡丹种子中不饱和脂肪酸生物合成和油积累的关键基因。本研究提供了第一种综合基因组资源,其特征在转录水平下表现出草本牡丹种子基因表达。这些数据奠定了阐明脂肪酸生物合成和油综合作用的分子机制的基础。

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