ANALYSES OF BOESENBERGIA ROTUNDA CELL SUSPENSION CULTURES WITH OVEREXPRESSED CHALCONE SYNTHASE (CHS) MANIFESTING CHANGES ON THE EXPRESSION LEVEL OF FLAVONOID-RELATED GENES

Q3 Multidisciplinary
Nurnadiah Roslan, Teh Ser Huy, L. Kee, N. Rahman, Z. Mohamed
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引用次数: 2

Abstract

Over the years, hundreds of potentially important and useful compounds from Boesenbergia rotunda (B. rotunda) have been successfully isolated and studied as these compounds have been shown to exhibit pharmacological and traditional medicinal properties in treating illness and diseases.  BrCHS2 transcript was chosen to be introduced into B. rotunda cell suspension culture for further study due to its higher abundance in rhizome as reported from previous study. Later, a high-throughput large-scale RNA sequencing (RNA-Seq) was used to generate massive transcriptome sequence data. This data was further analysed to understand the influence of BrCHS2 transcript overexpression in suspension cultures of B. rotunda. A total of 102,195 unigenes with an average length of 1008bp (N50: 1646bp) were assembled where 65.8% of them (67,251 unigenes) were successfully cross-referenced to several databases for gene annotation. To comprehensively examine the regulation of genes associated with flavonoids accumulation, RNA-Seq analysis of WT and TL cell suspension cultures were performed. Based on the distribution of differentially expressed genes (DEGs), 305 up-regulated genes and 181 down-regulated genes which were consistently shown in all three group of comparisons (WTs vs TLs), indicated that there were relatively higher numbers of upregulated genes in the transgenic suspension cultures compared to the wild-types as a result of BrCHS2 overexpression. However, further comparative analysis against the KEGG database highlighted the fact that flavonoid and related downstream pathways were down-regulated, which is deviated from our assumption. Also, due to the overexpression of BrCHS2 transcript, unigenes that are responsible in the plant-pathogen interaction pathway also increased as a response towards stress, indicating an important function on plant resistance. With a sufficient amount of data and transcripts obtained, potential unigenes that could be used for the biosynthesis of specific compounds such as flavonoids and plant defence metabolites in B. rotunda could be identified. Also, from these analyses, there is a potential biosynthesis pathway diverges from main pathways could be strongly supported and suggested.
高表达查尔酮合酶(CHS)的圆叶勃艮第细胞悬浮培养物黄酮类相关基因表达水平变化的分析
多年来,数百种潜在的重要和有用的化合物已被成功分离和研究,因为这些化合物已被证明在治疗疾病和疾病方面具有药理和传统的药用特性。由于BrCHS2转录本在根茎中的丰度较高,因此选择BrCHS2转录本导入圆圆草细胞悬浮培养进行进一步研究。随后,使用高通量大规模RNA测序(RNA- seq)产生大量转录组序列数据。我们进一步分析了BrCHS2转录本过表达对圆圆圆芽孢杆菌悬浮培养的影响。共组装了102,195个平均长度为1008bp (N50: 1646bp)的unigenes,其中65.8%(67,251个)的unigenes成功地与多个数据库交叉引用进行基因注释。为了全面研究黄酮类化合物积累相关基因的调控,我们对WT和TL细胞悬浮培养进行了RNA-Seq分析。根据差异表达基因(deg)的分布,三组比较中均一致显示305个上调基因和181个下调基因(WTs vs TLs),表明BrCHS2过表达导致转基因悬浮培养中相对于野生型存在较多的上调基因。然而,通过对KEGG数据库的进一步比较分析,我们发现类黄酮及其相关下游通路被下调,这与我们的假设不符。此外,由于BrCHS2转录物的过表达,植物与病原体相互作用途径的相关基因也随着胁迫的响应而增加,表明其在植物抗性中起重要作用。在获得足够数量的数据和转录本后,可以鉴定出可能用于圆形圆藻中黄酮类化合物和植物防御代谢物等特定化合物的生物合成的潜在单基因。此外,从这些分析中,可以强烈支持和建议一种潜在的生物合成途径偏离主要途径。
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来源期刊
Malaysian journal of science
Malaysian journal of science Multidisciplinary-Multidisciplinary
CiteScore
1.10
自引率
0.00%
发文量
36
期刊介绍: Information not localized
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