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岗梅 AtsDIR23 功能蛋白的功能分析。

Functional analysis of a dirigent protein AtsDIR23 in Acorustatarinowii.

机构信息

School of Life Sciences, Anhui Agricultural University, Hefei, 230036, China.

School of Life Sciences, Anhui Agricultural University, Hefei, 230036, China.

出版信息

J Plant Physiol. 2023 Nov;290:154098. doi: 10.1016/j.jplph.2023.154098. Epub 2023 Sep 23.

Abstract

Acorus tatarinowii (A. tatarinowii) is a medicinal plant of the Araceae family. Currently, pharmacology focuses on the study of volatile oils, but there are few reports of another important secondary metabolite, lignan. Dirigent protein is thought to play an important role in plant secondary metabolism and responds to a variety of biotic and abiotic stresses. However, the DIR gene family of A. tatarinowii has not been systematically analyzed, and it is unknown whether it affects lignan synthesis. In this study, a total of 27 AtsDIRs were identified by comprehensive analysis of the genome of the medicinal plant A. tatarinowii, and the candidate gene AtsDIR23 that may be involved in lignan synthesis was screened through bioinformatics and transcriptome analysis. It is worth noting that AtsDIR23 is significantly expressed in rhizomes and is a member of the DIR-a subfamily. Subsequently, subcellular localization revealed that AtsDIR23 was localized in chloroplasts. The functional verification of AtsDIR23 b y the transient transformation of A. tatarinowii and the stable transformation of Arabidopsis thaliana showed that the content of lignans in overexpressed plants increased. Co-expression analysis screening revealed the MYB transcription factor (AtsMYB91) that is highly correlated with AtsDIR23 expression, while yeast one-hybrid assays and double luciferase experiments showed that AtsMYB91 negatively regulated the expression of AtsDIR23 b y binding to the AtsDIR23 promoter. In conclusion, AtsDIR23 can promote the accumulation of lignans, which provides a reference for further research on the regulation of lignans by DIR genes.

摘要

石菖蒲(Acorus tatarinowii)是天南星科菖蒲属的药用植物。目前,药理学研究主要集中在挥发性油上,但对另一种重要的次生代谢物木脂素的研究较少。 dirigent 蛋白被认为在植物次生代谢中起重要作用,并对多种生物和非生物胁迫作出响应。然而,石菖蒲的 DIR 基因家族尚未得到系统分析,也不清楚它是否影响木脂素的合成。在这项研究中,通过对药用植物石菖蒲基因组的综合分析,共鉴定出 27 个 AtsDIRs,并通过生物信息学和转录组分析筛选出可能参与木脂素合成的候选基因 AtsDIR23。值得注意的是,AtsDIR23 在根茎中表达显著,是 DIR-a 亚家族的成员。随后,亚细胞定位表明 AtsDIR23 定位于叶绿体。通过石菖蒲的瞬时转化和拟南芥的稳定转化对 AtsDIR23 的功能验证表明,过表达植株中木脂素的含量增加。共表达分析筛选出与 AtsDIR23 表达高度相关的 MYB 转录因子(AtsMYB91),而酵母单杂交测定和双荧光素酶实验表明,AtsMYB91 通过与 AtsDIR23 启动子结合来负调控 AtsDIR23 的表达。综上所述,AtsDIR23 可以促进木脂素的积累,为进一步研究 DIR 基因对木脂素的调控提供了参考。

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