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热休克转录因子 PtHSF1 通过调控 GPAT3 和 DXS 的表达来介导三角褐指藻中三酰基甘油和岩藻黄质的合成。

The Heat Shock Transcription Factor PtHSF1 Mediates Triacylglycerol and Fucoxanthin Synthesis by Regulating the Expression of GPAT3 and DXS in Phaeodactylum tricornutum.

机构信息

School of Marine Sciences, Ningbo University, Ningbo 315211, China.

College of Food and Pharmaceutical Sciences, Ningbo University, Ningbo 315211, China.

出版信息

Plant Cell Physiol. 2023 Jun 15;64(6):622-636. doi: 10.1093/pcp/pcad023.

Abstract

In addition to being important primary productive forces in marine ecosystems, diatoms are also rich in bioactive substances such as triacylglycerol and fucoxanthin. However, little is known about the transcriptional mechanisms underlying the biosynthesis of these substances. In this study, we found that the heat shock transcription factor PtHSF1 positively regulated the synthesis of triacylglycerol and fucoxanthin in Phaeodactylum tricornutum. Overexpression of PtHSF1 could increase the contents of triacylglycerol and fucoxanthin and upregulate key enzyme genes involved in the triacylglycerol and fucoxanthin biosynthesis pathways. On the other hand, gene silencing of PtHSF1 reduced the contents of triacylglycerol and fucoxanthin and the expression of the key enzyme genes involved in the triacylglycerol and fucoxanthin biosynthesis pathways. Further biochemical analysis revealed that PtHSF1 upregulated glycerol-2-phosphate acyltransferase 3 (GPAT3) and 1-deoxy-d-xylulose 5-phosphate synthase (DXS) by directly binding to their promoters, while genetic analysis demonstrated that PtHSF1 acted upstream of GPAT3 and DXS to regulate triacylglycerol and fucoxanthin synthesis. Therefore, in addition to elucidating the regulation mechanisms underlying PtHSF1-mediated triacylglycerol and fucoxanthin synthesis, this study also provided a candidate target for metabolic engineering of triacylglycerol and fucoxanthin in P. tricornutum.

摘要

除了作为海洋生态系统中的重要初级生产力外,硅藻还富含生物活性物质,如三酰基甘油和岩藻黄质。然而,对于这些物质生物合成的转录机制知之甚少。在这项研究中,我们发现热休克转录因子 PtHSF1 正向调控三角褐指藻中三酰基甘油和岩藻黄质的合成。PtHSF1 的过表达可以增加三酰基甘油和岩藻黄质的含量,并上调三酰基甘油和岩藻黄质生物合成途径中的关键酶基因。另一方面,PtHSF1 的基因沉默降低了三酰基甘油和岩藻黄质的含量以及三酰基甘油和岩藻黄质生物合成途径中的关键酶基因的表达。进一步的生化分析表明,PtHSF1 通过直接结合其启动子上调甘油-2-磷酸酰基转移酶 3(GPAT3)和 1-脱氧-D-木酮糖 5-磷酸合酶(DXS),而遗传分析表明 PtHSF1 在 GPAT3 和 DXS 上游发挥作用,以调节三酰基甘油和岩藻黄质的合成。因此,本研究除了阐明 PtHSF1 介导的三酰基甘油和岩藻黄质合成的调控机制外,还为三角褐指藻中三酰基甘油和岩藻黄质的代谢工程提供了一个候选靶标。

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