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首页> 外文期刊>BMC Genomics >Next generation sequencing and de novo transcriptome analysis of Costus pictus D. Don, a non-model plant with potent anti-diabetic properties
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Next generation sequencing and de novo transcriptome analysis of Costus pictus D. Don, a non-model plant with potent anti-diabetic properties

机译:具有强效抗糖尿病特性的非模式植物小木麻黄的下一代测序和从头转录组分析

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Background Phyto-remedies for diabetic control are popular among patients with Type II Diabetes mellitus (DM), in addition to other diabetic control measures. A number of plant species are known to possess diabetic control properties. Costus pictus D. Don is popularly known as “Insulin Plant” in Southern India whose leaves have been reported to increase insulin pools in blood plasma. Next Generation Sequencing is employed as a powerful tool for identifying molecular signatures in the transcriptome related to physiological functions of plant tissues. We sequenced the leaf transcriptome of C. pictus using Illumina reversible dye terminator sequencing technology and used combination of bioinformatics tools for identifying transcripts related to anti-diabetic properties of C. pictus. Results A total of 55,006 transcripts were identified, of which 69.15% transcripts could be annotated. We identified transcripts related to pathways of bixin biosynthesis and geraniol and geranial biosynthesis as major transcripts from the class of isoprenoid secondary metabolites and validated the presence of putative norbixin methyltransferase, a precursor of Bixin. The transcripts encoding these terpenoids are known to be Peroxisome Proliferator-Activated Receptor (PPAR) agonists and anti-glycation agents. Sequential extraction and High Performance Liquid Chromatography (HPLC) confirmed the presence of bixin in C. pictus methanolic extracts. Another significant transcript identified in relation to anti-diabetic, anti-obesity and immuno-modulation is of Abscisic Acid biosynthetic pathway. We also report many other transcripts for the biosynthesis of antitumor, anti-oxidant and antimicrobial metabolites of C. pictus leaves. Conclusion Solid molecular signatures (transcripts related to bixin, abscisic acid, and geranial and geraniol biosynthesis) for the anti-diabetic properties of C. pictus leaves and vital clues related to the other phytochemical functions like antitumor, anti-oxidant, immuno-modulatory, anti-microbial and anti-malarial properties through the secondary metabolite pathway annotations are reported. The data provided will be of immense help to researchers working in the treatment of DM using herbal therapies.
机译:背景技术除其他糖尿病控制措施外,II型糖尿病(DM)患者中普遍采用的糖尿病控制植物疗法。已知许多植物具有糖尿病控制特性。 Costus pictus D. Don在印度南部被普遍称为“胰岛素植物”,据报道其叶子增加了血浆中的胰岛素库。下一代测序被用作在转录组中鉴定与植物组织的生理功能有关的分子标记的有力工具。我们使用Illumina可逆染料终止子测序技术对C. pictus的叶片转录组进行了测序,并使用生物信息学工具的组合来鉴定与C. pictus的抗糖尿病特性有关的转录本。结果共鉴定出55006份笔录,其中69.15%的笔录可以被注释。我们从类异戊二烯次生代谢产物类别中鉴定了与联蛋白生物合成和香叶醇及香叶醛生物合成途径有关的转录本,并验证了假定的降冰片素甲基转移酶(联蛋白的前体)的存在。已知编码这些萜类的转录物是过氧化物酶体增殖物激活受体(PPAR)激动剂和抗糖化剂。顺序萃取和高效液相色谱法(HPLC)证实了美人鱼甲醇提取物中联苯醚的存在。与抗糖尿病,抗肥胖和免疫调节有关的另一个重要的转录本是脱落酸的生物合成途径。我们还报告了C. pictus叶子的抗肿瘤,抗氧化和抗菌代谢产物生物合成的许多其他转录本。结论固体分子标记(与Bixin,脱落酸,香叶醛和香叶醇生物合成有关的转录物)具有对C. pictus叶片的抗糖尿病特性,以及与其他植物化学功能有关的重要线索,如抗肿瘤,抗氧化,免疫调节,报告了通过次级代谢途径注释的抗微生物和抗疟疾特性。提供的数据将为从事草药疗法治疗DM的研究人员提供巨大帮助。

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