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代谢组学和转录组学分析揭示了白芨块茎对遮荫响应中多糖和次生代谢物生物合成的机制。

Metabolomic and transcriptomic analyses reveal the mechanism of polysaccharide and secondary metabolite biosynthesis in Bletilla striata tubers in response to shading.

机构信息

Research Center of Bioengineering, Zhengzhou Normal University, Zhengzhou 450044, China.

Research Center of Bioengineering, Zhengzhou Normal University, Zhengzhou 450044, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 4):135545. doi: 10.1016/j.ijbiomac.2024.135545. Epub 2024 Sep 11.

DOI:10.1016/j.ijbiomac.2024.135545
PMID:39270910
Abstract

Polysaccharides and various secondary metabolites are the major bioactive ingredients in Bletilla striata tubers and their biosynthesis and accumulation are influenced by light intensity. However, the mechanisms underlying shading effects remain largely unknown. In the present study, we used a combined analysis of the physiology, metabolome, and transcriptome to investigate the physiological activities and bioactive component accumulation of B. striata under different shading treatments (S0, S50, S70, and S90). The dry weight of shoots and tubers, net photosynthetic rate, and polysaccharide content were highest in S50 and lowest in S90. The content of precursors (sucrose, Glucose-6P, and Mannose-6P) for polysaccharide synthesis significantly increased in S50. However, the expression levels of genes involved in starch biosynthesis decreased in S50. Several structural genes involved in secondary metabolism, including cinnamic acid 4-hydroxylase (C4H), chalcone synthase (CHS), and 1-Deoxy-D-xylulose-5-phosphate synthase (DXS), showed decreased expression in S50. However, the shading effect on the biosynthesis of secondary metabolites (phenylpropanoids, flavonoids, and terpenoids) was inconsistent. Our study provides the molecular mechanisms underlying the effects of shading on the biosynthesis of polysaccharides and secondary metabolites in B. striata and offers a theoretical basis for the artificial cultivation and industrial production of bioactive ingredients.

摘要

多糖和各种次生代谢产物是白芨块茎中的主要生物活性成分,其生物合成和积累受光照强度的影响。然而,遮荫效应的机制在很大程度上仍然未知。在本研究中,我们采用生理、代谢组学和转录组学综合分析的方法,研究了不同遮荫处理(S0、S50、S70 和 S90)下白芨的生理活性和生物活性成分积累。S50 处理下的茎叶干重、净光合速率和多糖含量最高,S90 处理下的最低。多糖合成前体(蔗糖、葡萄糖-6-磷酸和甘露糖-6-磷酸)的含量在 S50 中显著增加。然而,S50 中参与淀粉生物合成的基因表达水平下降。几种参与次生代谢的结构基因,包括肉桂酸 4-羟化酶(C4H)、查尔酮合酶(CHS)和 1-脱氧-D-木酮糖-5-磷酸合酶(DXS),在 S50 中表达下调。然而,遮荫对次生代谢物(苯丙烷类、类黄酮类和萜类化合物)的生物合成的影响不一致。本研究为白芨多糖和次生代谢物生物合成的遮荫效应提供了分子机制,为生物活性成分的人工栽培和工业生产提供了理论依据。

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