Multimodal non-invasive probing of stress-induced carotenogenesis in the cells of microalga Bracteacoccus aggregatus.

IF 2.5 3区 生物学 Q3 CELL BIOLOGY Protoplasma Pub Date : 2024-09-01 Epub Date: 2024-05-04 DOI:10.1007/s00709-024-01956-9
Alexei Solovchenko, Elena Lobakova, Alexey Semenov, Olga Gorelova, Tatiana Fedorenko, Olga Chivkunova, Evgenia Parshina, Georgy Maksimov, Nikolai N Sluchanko, Eugene Maksimov
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Abstract

Microalgae are the richest source of natural carotenoids-accessory photosynthetic pigments used as natural antioxidants, safe colorants, and nutraceuticals. Microalga Bracteacoccus aggregatus IPPAS C-2045 responds to stresses, including high light, with carotenogenesis-gross accumulation of secondary carotenoids (the carotenoids structurally and energetically uncoupled from photosynthesis). Precise mechanisms of cytoplasmic transport and subcellular distribution of the secondary carotenoids under stress are still unknown. Using multimodal imaging combining micro-Raman imaging (MRI), fluorescent lifetime (τ) imaging (FLIM), and transmission electron microscopy (TEM), we monitored ultrastructural and biochemical rearrangements of B. aggregatus cells during the stress-induced carotenogenesis. MRI revealed a decline in the diversity of molecular surrounding of the carotenoids in the cells compatible with the relocation of the bulk of the carotenoids in the cell from functionally and structurally heterogeneous photosynthetic apparatus to the more homogenous lipid matrix of the oleosomes. Two-photon FLIM highlighted the pigment transformation in the cell during the stress-induced carotenogenesis. The structures co-localized with the carotenoids with shorter τ (mainly chloroplast) shrunk, whereas the structures harboring secondary carotenoids with longer τ (mainly oleosomes) expanded. These changes were in line with the ultrastructural data (TEM). Fluorescence of B. aggregatus carotenoids, either in situ or in acetone extracts, possessed a surprisingly long lifetime. We hypothesize that the extension of τ of the carotenoids is due to their aggregation and/or association with lipids and proteins. The propagation of the carotenoids with prolonged τ is considered to be a manifestation of the secondary carotenogenesis suitable for its non-invasive monitoring with multimodal imaging.

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多模式非侵入式探测微藻白术聚糖细胞中应激诱导的胡萝卜素生成。
微藻类是天然类胡萝卜素的最丰富来源--类胡萝卜素是光合作用的辅助色素,可用作天然抗氧化剂、安全着色剂和营养保健品。微藻白术聚合藻 IPPAS C-2045 通过类胡萝卜素生成--次生类胡萝卜素的大量积累(在结构上和能量上与光合作用脱钩的类胡萝卜素)来应对包括强光在内的压力。次生类胡萝卜素在胁迫下的细胞质运输和亚细胞分布的精确机制尚不清楚。利用微拉曼成像(MRI)、荧光寿命(τ)成像(FLIM)和透射电子显微镜(TEM)相结合的多模式成像技术,我们监测了B. 聚合体细胞在应激诱导胡萝卜素生成过程中的超微结构和生化重排。核磁共振成像显示,细胞中类胡萝卜素分子周围的多样性下降,这与细胞中大部分类胡萝卜素从功能和结构上异质的光合装置转移到更均匀的油脂体脂质基质是一致的。双光子荧光成像(Two-photon FLIM)突出显示了在应激诱导的类胡萝卜素生成过程中细胞中色素的转变。与τ较短的类胡萝卜素共定位的结构(主要是叶绿体)缩小,而含有τ较长的次生类胡萝卜素的结构(主要是油小体)扩大。这些变化与超微结构数据(TEM)一致。无论是在原位还是在丙酮提取物中,聚合虫类胡萝卜素的荧光都具有惊人的长寿命。我们推测类胡萝卜素τ的延长是由于它们的聚集和/或与脂质和蛋白质的结合。类胡萝卜素τ的延长被认为是二次胡萝卜素生成的一种表现形式,适合用多模态成像技术对其进行非侵入性监测。
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来源期刊
Protoplasma
Protoplasma 生物-细胞生物学
CiteScore
6.60
自引率
6.90%
发文量
99
审稿时长
4-8 weeks
期刊介绍: Protoplasma publishes original papers, short communications and review articles which are of interest to cell biology in all its scientific and applied aspects. We seek contributions dealing with plants and animals but also prokaryotes, protists and fungi, from the following fields: cell biology of both single and multicellular organisms molecular cytology the cell cycle membrane biology including biogenesis, dynamics, energetics and electrophysiology inter- and intracellular transport the cytoskeleton organelles experimental and quantitative ultrastructure cyto- and histochemistry Further, conceptual contributions such as new models or discoveries at the cutting edge of cell biology research will be published under the headings "New Ideas in Cell Biology".
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