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通过抑制新型 miRstv_7 来改善甜菊糖甙生物合成途径关键基因的感官和抗氧化特性 Stevia rebaudiana Bertoni。

Improving organoleptic and antioxidant properties by inhibition of novel miRstv_7 to target key genes of steviol glycosides biosynthetic pathway in Stevia rebaudiana Bertoni.

机构信息

Centre for Transgenic Plant Development, Department of Biotechnology, School of Chemical and Life Sciences, Jamia Hamdard, New Delhi, 110062, India.

出版信息

Plant Mol Biol. 2024 Oct 2;114(5):109. doi: 10.1007/s11103-024-01505-1.

Abstract

Stevioside (5-10%) and rebaudioside-A (2-4%) are well-characterized diterpene glycosides found in leaves of Stevia rebaudiana known to have natural sweetening properties with zero glycaemic index. Stevioside has after-taste bitterness, whereas rebaudioside-A is sweet in taste. The ratio of rebaudioside-A to stevioside needs to be changed in order to increase the effectiveness and palatability of this natural sweetener. Plant-specific miRNAs play a significant role in the regulation of metabolic pathways for the biosynthesis of economically important secondary metabolites. In this study inhibition of miRNA through antisense technology was employed to antagonize the repressive action of miRstv_7 on its target mRNAs involved in the steviol glycosides (SGs) biosynthesis pathway. In transgenic plants expressing anti-miRstv_7, reduced expression level of endogenous miRstv_7 was observed than the non-transformed plants. As a result, enhanced expression of target genes, viz. KO (Kaurene oxidase), KAH (Kaurenoic acid-13-hydroxylase), and UGT76G1 (UDP-glycosyltransferase 76G1) led to a significant increase in the rebaudioside-A to stevioside ratio. Furthermore, metabolome analysis revealed a significant increase in total steviol glycosides content as well as total flavonoids content. Thus, our study can be utilized to generate more palatable varieties of Stevia with improved nutraceutical values including better organoleptic and antioxidant properties.

摘要

甜菊苷(5-10%)和莱鲍迪苷 A(2-4%)是甜叶菊叶中特征明确的二萜糖苷,具有天然的甜味特性,血糖指数为零。甜菊苷有后苦味,而莱鲍迪苷 A 则有甜味。为了提高这种天然甜味剂的效果和口感,需要改变莱鲍迪苷 A 与甜菊苷的比例。植物特异性 microRNA 在调控经济上重要的次生代谢物生物合成的代谢途径方面发挥着重要作用。在这项研究中,通过反义技术抑制 miRNA,拮抗 miRstv_7 对其靶 mRNAs 的抑制作用,这些 mRNAs 参与甜菊糖苷(SGs)生物合成途径。在表达 anti-miRstv_7 的转基因植物中,与非转化植物相比,内源 miRstv_7 的表达水平降低。结果,靶基因 KO(贝壳杉烯氧化酶)、KAH(贝壳杉烯酸-13-羟化酶)和 UGT76G1(UDP-糖基转移酶 76G1)的表达增强,导致莱鲍迪苷 A 与甜菊苷的比例显著增加。此外,代谢组学分析显示,总甜菊糖苷和总类黄酮含量显著增加。因此,我们的研究可以用来产生更可口的甜菊品种,提高其营养保健品价值,包括更好的感官和抗氧化特性。

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