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两种辣木属植物的转录组图谱分析及其降血糖活性的研究。

Transcriptome profiling of two Moringa species and insights into their antihyperglycemic activity.

机构信息

National Centre for Biological Sciences (TIFR), GKVK campus, Bangalore, India.

Centre for Ayurveda Biology and Holistic Nutrition, The University of Trans-Disciplinary Health Sciences & Technology (TDU), Yelahanka, Bangalore, 560064, Karnataka, India.

出版信息

BMC Plant Biol. 2022 Dec 2;22(1):561. doi: 10.1186/s12870-022-03938-6.

Abstract

BACKGROUND

Moringa concanensis Nimmo (MC), a plant that resembles Moringa oleifera Lam. (MO), has less scientific information but has traditionally been used as a medicinal plant. Moringa species have long been known for their medicinal qualities, which include antioxidant, anti-inflammatory, anticancer, and antihyperglycemic effects. We investigated the antidiabetic potential of MC and MO species in this study by using transcriptome profiling, metabolite analysis, and in vitro assay studies.

RESULTS

Our transcriptome analysis revealed the expression of enzymes involved in the biosynthesis of quercetin, chlorogenic acid, and benzylamine, all of which have previously been shown to have antidiabetic activity. We compared the expression patterns of five different tissues from MC and MO and it was found that the key enzymes involved in the biosynthesis of these compounds were highly expressed in leaf tissue. The expression estimated by MC transcriptome data in different tissues was verified using RT-qPCR analysis. The amount of these compounds was further quantified in the crude leaf extract of both species and found that MC had a higher abundance of quercetin and chlorogenic acid than MO. The crude leaf extract from both MC and MO were further tested in vitro, and the results demonstrated strong inhibitory activity for α-glucosidase and DPP-IV enzymes. Our findings suggest that compounds in leaf tissue, such as quercetin, benzylamine, and chlorogenic acid, could play a significant role in this antidiabetic activity. In addition, when comparing MO plants, we found that MC had a slightly higher effect in expression, abundance, and inhibitory activity.

CONCLUSIONS

This study presents the first report of MC transcriptome data, as well as a comparison of its anti-diabetic activity to MO. Our analysis discussed the significance of leaf tissue in antidiabetic activity compared to other tissues of both species. Overall, this study not only provides transcriptome resources for Moringa species, but also sheds light on antidiabetic potential of both species.

摘要

背景

Moringa concanensis Nimmo(MC)与 Moringa oleifera Lam.(MO)相似,其科学信息较少,但传统上被用作药用植物。长期以来,Moringa 物种因其药用特性而闻名,包括抗氧化、抗炎、抗癌和抗高血糖作用。在这项研究中,我们通过转录组分析、代谢物分析和体外测定研究,研究了 MC 和 MO 物种的抗糖尿病潜力。

结果

我们的转录组分析揭示了参与槲皮素、绿原酸和苯甲胺生物合成的酶的表达,所有这些化合物以前都被证明具有抗糖尿病活性。我们比较了 MC 和 MO 五种不同组织的表达模式,发现参与这些化合物生物合成的关键酶在叶组织中高度表达。使用 RT-qPCR 分析验证了 MC 转录组数据在不同组织中的表达估计。进一步在两种植物的粗叶提取物中定量这些化合物,发现 MC 比 MO 具有更高含量的槲皮素和绿原酸。进一步在体外测试了来自 MC 和 MO 的粗叶提取物,结果表明它们对α-葡萄糖苷酶和 DPP-IV 酶具有强烈的抑制活性。我们的研究结果表明,叶组织中的化合物,如槲皮素、苯甲胺和绿原酸,可能在这种抗糖尿病活性中发挥重要作用。此外,在比较 MO 植物时,我们发现 MC 在表达、丰度和抑制活性方面的效果略高。

结论

本研究首次报道了 MC 的转录组数据,并比较了其抗糖尿病活性与 MO 的差异。我们的分析讨论了与两种植物的其他组织相比,叶组织在抗糖尿病活性中的重要性。总体而言,这项研究不仅为 Moringa 物种提供了转录组资源,还揭示了两种植物的抗糖尿病潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e93/9717441/b12d757790c8/12870_2022_3938_Fig1_HTML.jpg

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