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一种Myb转录因子,PgMyb308-like,可提高石榴(Punica granatum L.)中莽草酸、芳香族氨基酸和木质素的含量,但会抑制类黄酮和可水解单宁的合成。

A Myb transcription factor, PgMyb308-like, enhances the level of shikimate, aromatic amino acids, and lignins, but represses the synthesis of flavonoids and hydrolyzable tannins, in pomegranate (Punica granatum L.).

作者信息

Dhakarey Rohit, Yaritz Uri, Tian Li, Amir Rachel

机构信息

Migal - Galilee Technology Center, P.O. Box 831, Kiryat Shmona 1101600, Israel.

Tel-Hai College, Upper Galilee, 1220800, Israel.

出版信息

Hortic Res. 2022 Feb 11;9. doi: 10.1093/hr/uhac008.

Abstract

Pomegranate fruit peels are highly abundant in metabolites derived from the shikimate pathway, such as hydrolyzable tannins (HTs) and flavonoids. These metabolites are beneficial to human health (commercial juice is enriched with peel metabolites), and also protect the fruit from environmental stresses. To understand the transcriptional control of shikimate pathway-related metabolites in pomegranate, we cloned and characterized a subgroup S4 R2R3 Myb transcription factor, PgMyb308-like. Overexpressing PgMyb308-like in pomegranate hairy roots increased the accumulation of shikimate, aromatic amino acids, isoferulic acid, and total lignins, but led to reduced gallic acid and its downstream products HTs, as well as multiple flavonoids. Changes in these metabolites are supported by the increased expression of 3-deoxy-D-arabino-heptulosonate 7-phosphate synthase and shikimate dehydrogenase 1 (PgSDH1) (the SDH isoform associated with shikimate biosynthesis), and the reduced expression of PgSDH4 (the SDH isoform suggested to produce gallic acid). Transcriptome analysis of PgMyb308-like-overexpressing hairy roots further revealed reprogramming of cell wall-related genes, while overexpression of PgMyb308-like in Arabidopsis thaliana plants uncovered its distinct role in a different genetic and metabolic background. These results together suggest that PgMyb308-like activates genes in the shikimate pathway and lignin biosynthesis, but suppresses those involved in the production of HTs and flavonoids.

摘要

石榴果皮富含源自莽草酸途径的代谢产物,如可水解单宁(HTs)和类黄酮。这些代谢产物对人体健康有益(商业果汁富含果皮代谢产物),还能保护果实免受环境胁迫。为了解石榴中莽草酸途径相关代谢产物的转录调控,我们克隆并鉴定了一个S4亚组R2R3 Myb转录因子,PgMyb308-like。在石榴毛状根中过表达PgMyb308-like会增加莽草酸、芳香族氨基酸、异阿魏酸和总木质素的积累,但会导致没食子酸及其下游产物HTs以及多种类黄酮的减少。这些代谢产物的变化得到了3-脱氧-D-阿拉伯庚糖酸-7-磷酸合酶和莽草酸脱氢酶1(PgSDH1)(与莽草酸生物合成相关的SDH亚型)表达增加以及PgSDH4(被认为产生没食子酸的SDH亚型)表达减少的支持。对过表达PgMyb308-like的毛状根进行转录组分析进一步揭示了细胞壁相关基因的重编程,而在拟南芥植物中过表达PgMyb308-like则揭示了其在不同遗传和代谢背景下的独特作用。这些结果共同表明,PgMyb308-like激活莽草酸途径和木质素生物合成中的基因,但抑制参与HTs和类黄酮产生的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76f7/9113223/2af659ee7800/uhac008f5.jpg

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