数字农科院2.0

Functional study of Phaeodactylum tricornutum Seipin highlights specificities of lipid droplets biogenesis in diatoms

文献类型: 外文期刊

作者: Le Moigne, Damien;Carletti, Marta;Amari, Chems;Bonnarde, Rachel;Richard, Fabien;Albrieux, Catherine;Mahieu, Megane;Arrighi, Matteo;Si-Larbi, Gregory;Jouneau, Pierre-Henri;Gros, Valerie;Louwagie, Mathilde;Roy, Sylvaine;Gong, Yangmin;Pan, Yufang;Hu, Hanhua;Bastien, Olivier;Jouhet, Juliette;Amato, Alberto;Marechal, Eric;Salvaing, Juliette

作者机构:

关键词: lipid droplets biogenesis;lipidomics;Phaeodactylum tricornutum;seipin;triacylglycerol (TAG)

期刊名称: NEW PHYTOLOGIST

ISSN: 0028-646X

年卷期: 2025 年

页码:

收录情况: SCIE(2025版)

摘要: Diatoms are a major phylum of microalgae, playing crucial ecological roles. They derive from secondary endosymbiosis, leading to a complex intracellular architecture. Their ability to store oil in lipid droplets (LDs) upon unfavourable conditions has raised interest for applications, in particular biofuels, yet Lipid Droplet (LD) biogenesis mechanisms in these organisms remain poorly understood. Here, we functionally characterize the homolog of Seipin, a major actor of LD biogenesis, in Phaeodactylum tricornutum. We used an in silico approach to analyze the evolutionary origin of PtSeipin and its specific features. Then, we used a functional genetics approach with a combination of confocal and electronic microscopy and lipidomics to characterize the protein function. We provide evidence that Stramenopiles Seipins were inherited from the host during secondary endosymbiosis. The localization of PtSeipin highlights participation of the plastid's most external membrane in LD biogenesis. Finally, the knock-out (KO) of PtSeipin leads to a strong increase of triacylglycerol (TAG) accumulation, a feature that had not been observed in adipogenic or oleaginous cells and is greatly enhanced following high light exposure. Our results suggest a redirection of lipid fluxes toward TAG synthesis, reduced TAG recycling or a combination of both in PtSeipin KO.

分类号:

  • 相关文献

[1]Identification and biochemical characterization of five long-chain acyl-coenzyme A synthetases from the diatom Phaeodactylum tricornutum. Guo, Xiaojing,Jiang, Mulan,Wan, Xia,Hu, Chuanjiong,Gong, Yangmin.

[2]Identification and characterization of PtDGAT2B, an acyltransferase of the DGAT2 acyl-Coenzyme A: Diacylglycerol acyltransferase family in the diatom Phaeodactylum tricornutum. Gong, Yangmin,Zhang, Junping,Guo, Xiaojing,Wan, Xia,Liang, Zhuo,Hu, Chuan Jiong,Jiang, Mulan,Zhang, Junping.

[3]Triacylglycerol accumulation and change in fatty acid content of four marine oleaginous microalgae under nutrient limitation and at different culture ages. Gong, Yangmin,Guo, Xiaojing,Wan, Xia,Liang, Zhuo,Jiang, Mulan.

[4]Acyl-CoA:lysophosphatidylcholine acyltransferase from the unicellular diatom Phaeodactylum tricornutum (PtLPCAT1) is involved in triacylglycerol and galactoglycerolipid synthesis and enhances eicosapentaenoic acid accumulation in recombinant oleaginous ye. You, Lingjie,Jouhet, Juliette,Marechal, Eric,Amato, Alberto,Hao, Xiahui,Zhang, Donghui,Banas, Antoni,Gong, Yangmin. 2022

[5]Determining the Subcellular Localization of Proteins in the Different Membranes of Diatom Secondary Plastid. Xiaojuan Liu,Yangmin Gong. 2024

[6]Biochemical characterization of acyl-CoA:diacylglycerol acyltransferase2 from the diatom Phaeodactylum tricornutum and its potential effect on LC-PUFAs biosynthesis in planta. Sylwia Klińska-Bąchor,Kamil Demski,Yangmin Gong,Antoni Banaś. 2024

[7]Iterative pathway engineering of the diatom Phaeodactylum tricornutum to enhance the biosynthesis of long-chain polyunsaturated fatty acids using the Cre recombinase-mediated marker recycling. Zhu, Junkai,Chen, Weizhong,Li, Shuangqing,Allen, Andrew E.,Xu, Xinde,Wang, Xiaoping,Jiang, Haibo,Gong, Yangmin. 2025

[8]UPLC-Q-Exactive Orbitrap/MS-Based Lipidomics Approach To Characterize Lipid Extracts from Bee Pollen and Their in Vitro Anti-Inflammatory Properties. Li, Qiangqiang,Liang, Xinwen,Xue, Xiaofeng,Wang, Kai,We, Liming,Li, Qiangqiang,Liang, Xinwen,Xue, Xiaofeng,Wang, Kai,We, Liming,Li, Qiangqiang,Liang, Xinwen,Xue, Xiaofeng,Wang, Kai,Zhao, Liang,Zhang, Zhongyin.

[9]Identification of diagnostic biomarkers and metabolic pathway shifts of heat-stressed lactating dairy cows. Tian, He,Zheng, Nan,Li, Songli,Zhang, Yangdong,Wang, Jiaqi,Wang, Weiyu,Cheng, Jianbo.

[10]Lipidomic profiling of tryptophan hydroxylase 2 knockout mice reveals novel lipid biomarkers associated with serotonin deficiency. Weng, Rui,Shen, Sensen,Yang, Li,Bai, Yu,Liu, Huwei,Weng, Rui,Burton, Casey,Burton, Casey,Nie, Honggang,Tian, Yonglu.

[11]Lipidomics profiling of goat milk, soymilk and bovine milk by UPLC-Q-Exactive Orbitrap Mass Spectrometry. Li, Qiangqiang,Zhao, Yan,Zhu, Dan,Pang, Xiumei,Liu, Yue,Chen, Gang,Li, Qiangqiang,Frew, Russell.

[12]Lipidomics Analysis Unravels The Effect O.f Nitrogen Fertilization On L ipid Metabolism In Tea Plant (Camellia Sinensis L.). Liu, MY, Burgos, A, Ma, LF, Zhang, QF, Tang, DD, Ruan, JY. 2017

[13]Comprehensive lipidomics and volatile compounds profiling reveals correlation of lipids and flavors in DHA-enriched egg yolk. Nian Wang,Jie Wang,Yao Zhang,Zongyuan Wu,Dan Wang,Huaming Xiao,Xin Lv,Hong Chen,Fang Wei. 2023

[14]Revealing the dynamic changes of lipids in coffee beans during roasting based on UHPLC-QE-HR-AM/MS/MS. Jinrui Zhu,Li Zhou,Minjie Zhao,Fang Wei,Haiyan Fu,Eric Marchioni. 2023

[15]Changes in physical architecture and lipids compounds in skeletal muscle from Pekin duck and Liancheng white duck. Hehe Tang,He Zhang,Dapeng Liu,Shunan Li,Zhen Wang,Daxun Yu,Zhan bao Guo,Shuisheng Hou,Zhengkui Zhou. 2023

[16]Untargeted lipidomics and metagenomics reveal the mechanism of aspirin eugenol ester relieving hyperlipidemia in ApoE−/− mice. Xiao Rong Lu,Xi Wang Liu,Shi Hong Li,Zhe Qin,Li Xia Bai,Wen Bo Ge,Jian Yong Li,Ya Jun Yang. 2022

[17]Integrated metabolomics and lipidomics evaluate the alterations of flavor precursors in chicken breast muscle with white striping symptom. Kong F.,Bai L.,He Z.,Sun J.,Tan X.,Zhao D.,Feng F.,Liu D.,Zhao G.,Wen J.,Liu R.. 2023

[18]Changes in lipids and aroma compounds in intramuscular fat from Hu sheep. Jing Li,Youyou Yang,Chaohua Tang,Shengnan Yue,Qingyu Zhao,Fadi Li,Junmin Zhang. 2022

[19]Meat differentiation between pasture-fed and concentrate-fed sheep/goats by liquid chromatography quadrupole time-of-flight mass spectrometry combined with metabolomic and lipidomic profiling. Jishi Wang,Zhenzhen Xu,Hongbo Zhang,Yanyun Wang,Xiaoxia Liu,Qian Wang,Jiali Xue,Yan Zhao,Shuming Yang. 2021

[20]Discrimination of beef from different origins based on lipidomics: A comparison study of DART-QTOF and LC-ESI-QTOF. Kewen Wang,Lei Xu,Xue Wang,Ailiang Chen,Zhenzhen Xu. 2021

作者其他论文 更多>>