Lipid metabolism and autophagy maintain cellular homeostasis under chloroplast dysfunction in Chlamydomonas reinhardtii.

IF 8.7 1区 生物学 Q1 PLANT SCIENCES
New Phytologist Pub Date : 2026-04-18 DOI:10.1111/nph.71139
Huanling Yang,Chunyang Zhang,Junting Pan,Jiale Xing,Song Bin,Fei Han,Meimei Wang,Guanghou Shui,Wenqiang Yang
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引用次数: 0

Abstract

Lipid rearrangement is a fundamental adaptive response to cellular stress. This study elucidates the global lipid metabolic adjustments in response to chloroplast dysfunction following the depletion of Orf2971, a plastid-encoded protein essential for protein import in Chlamydomonas reinhardtii. We utilized an integrated approach, combining lipidomics, fluorescence/electron microscopy, flow cytometry, and biochemical assays to comprehensively profile lipid dynamics, organelle ultrastructure, and gene and protein expression after Orf2971 depletion in Chlamydomonas reinhardtii. Orf2971 depletion triggered biphasic triacylglycerol (TAG) dynamics: initial accumulation via de novo synthesis followed by autophagic degradation (lipophagy). Concurrently, elevated cardiolipin drove mitochondrial remodeling with associated morphological changes, enhanced respiratory capacity, and upregulated cardiolipin-translocating genes, indicating the potential induction of mitophagy. Our study reveals a coordinated inter-organellar adaptation to chloroplast stress, where rapid TAG turnover via lipophagy and cardiolipin-mediated mitochondrial enhancement collectively compensate for compromised chloroplast function to maintain cellular homeostasis.
莱茵衣藻叶绿体功能紊乱时,脂质代谢和自噬维持细胞内稳态。
脂质重排是对细胞应激的基本适应性反应。这项研究阐明了Orf2971缺失后叶绿体功能障碍的全球脂质代谢调节,Orf2971是莱茵衣藻中蛋白质输入所必需的质体编码蛋白。本研究采用脂质组学、荧光/电镜、流式细胞术和生化分析相结合的综合方法,全面分析了莱茵衣藻Orf2971缺失后的脂质动力学、细胞器超微结构以及基因和蛋白表达。Orf2971耗竭触发双相三酰甘油(TAG)动力学:最初通过从头合成积累,然后自噬降解(脂噬)。同时,升高的心磷脂驱动线粒体重塑,并伴有形态学改变、呼吸能力增强和心磷脂易位基因上调,表明可能诱导线粒体自噬。我们的研究揭示了对叶绿体胁迫的协调的细胞器间适应,其中通过脂噬和心磷脂介导的线粒体增强的快速TAG转换共同补偿受损的叶绿体功能以维持细胞稳态。
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来源期刊
New Phytologist
New Phytologist 生物-植物科学
自引率
5.30%
发文量
728
期刊介绍: New Phytologist is an international electronic journal published 24 times a year. It is owned by the New Phytologist Foundation, a non-profit-making charitable organization dedicated to promoting plant science. The journal publishes excellent, novel, rigorous, and timely research and scholarship in plant science and its applications. The articles cover topics in five sections: Physiology & Development, Environment, Interaction, Evolution, and Transformative Plant Biotechnology. These sections encompass intracellular processes, global environmental change, and encourage cross-disciplinary approaches. The journal recognizes the use of techniques from molecular and cell biology, functional genomics, modeling, and system-based approaches in plant science. Abstracting and Indexing Information for New Phytologist includes Academic Search, AgBiotech News & Information, Agroforestry Abstracts, Biochemistry & Biophysics Citation Index, Botanical Pesticides, CAB Abstracts®, Environment Index, Global Health, and Plant Breeding Abstracts, and others.
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anti-AOX1
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anti-ATG3
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anti-ATG8
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anti-ATPA
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anti-COXIIB
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Cer d18:1/15:0-d7
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d17:1 S1P
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d17:1 Sph
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d5-CL72:8
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d5-DAG16:0/16:0
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d5-DAG18:1/18:1
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d7-LPC18:1
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d7-LPE18:1
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d7-PA33:1
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d7-PE33:1
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d7-PG33:1
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d7-PI33:1
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d9-PC32:0
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DGDG 36:0
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D-ribo-phytoSph C17
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GluCer d18:1/12:0
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GM1 d18:1/18:0-d3
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MGDG 34:0
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MoFlo XDP
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LipiD-Blue
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PVDF membrane
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Synergy Mx
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d6-C18:0 cholesteryl ester
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TAG (14:0)3-d5
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TAG (15:0)3-d29
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TAG (18:0)3-d5
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Dioctanoyl phosphatidylinositol (16:0-PI)
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SpeedVac
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10-N-Nonyl Acridine Orange
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MitoTracker Red CMXRos
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JEM-1230 transmission electron microscope
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dansylcadaverine
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Kinetex 2.6 μm-C18 column
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FireStingGo2
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LightCycler 480 System
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QTRAP6500 PLUS
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Nexera 20AD-HPLC
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anti-α-Tubulin
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d31-16:0
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Nile Red
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TB Green Premix Ex Taq kit
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reverse transcription kit
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RNA easy fast plant kit
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anti-GFP
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LysoSensor Green DND-189
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Zeiss LSM 980 with Elyra7
56
22
3-methyladenine
5142-23-4
28.00-16270.00
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