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共生藻单细胞对温度胁迫的光生理响应。

Photophysiological response of Symbiodiniaceae single cells to temperature stress.

作者信息

Xiao Linhong, Johansson Sofia, Rughöft Saskia, Burki Fabien, Sandin Miguel Mendez, Tenje Maria, Behrendt Lars

机构信息

Department of Organismal Biology, Uppsala University, Norbyvägen 18A, SE-752 36, Uppsala, Sweden.

Department of Materials Science and Engineering, Science for Life Laboratory, Uppsala University, Box 35, SE-751 03, Uppsala, Sweden.

出版信息

ISME J. 2022 Aug;16(8):2060-2064. doi: 10.1038/s41396-022-01243-6. Epub 2022 Apr 26.

Abstract

Photosynthetic dinoflagellates in the family Symbiodiniaceae engage in symbiosis with scleractinian corals. As coral 'bleaching' is partly governed by the thermal sensitivity of different Symbiodiniaceae lineages, numerous studies have investigated their temperature sensitivity. However, the systematic identification of single-cells with increased temperature resistance among these dinoflagellates has remained inaccessible, mostly due to a lack of technologies operating at the microscale. Here, we employed a unique combination of microfluidics, miniaturized temperature control, and chlorophyll fluorometry to characterize the single-cell heterogeneity among five representative species within the Symbiodiniaceae family under temperature stress. We monitored single-cell maximum quantum yields (F/F) of photosystem (PS) II under increasing temperature stress (22‒39 °C, + 1 °C every 15 min), and detected a significant F/F reduction at lineage-specific temperatures ranging from 28 °C to 34 °C alongside a 40- to 180- fold increase in intraspecific heterogeneity under elevated temperatures (>31 °C). We discovered that the initial F/F of a cell could predict the same cell's ability to perform PSII photochemistry under moderate temperature stress (<32 °C), suggesting its use as a proxy for measuring the thermal sensitivity among Symbiodiniaceae. In combination, our study highlights the heterogeneous thermal sensitivity among photosynthetic Symbiodiniaceae and adds critical resolution to our understanding of temperature-induced coral bleaching.

摘要

共生藻科的光合甲藻与石珊瑚形成共生关系。由于珊瑚“白化”部分受不同共生藻科谱系的热敏感性控制,众多研究对它们的温度敏感性进行了调查。然而,在这些甲藻中系统鉴定出具有更高耐热性的单细胞仍然难以实现,这主要是由于缺乏在微观尺度上操作的技术。在此,我们采用了微流控技术、小型化温度控制和叶绿素荧光测定法的独特组合,来表征共生藻科中五个代表性物种在温度胁迫下的单细胞异质性。我们在温度逐渐升高的胁迫条件下(22‒39 °C,每15分钟升高1 °C)监测了光系统(PS)II的单细胞最大量子产率(F/F),并检测到在28 °C至34 °C的特定谱系温度下F/F显著降低,同时在高温(>31 °C)下种内异质性增加了40至180倍。我们发现,细胞的初始F/F可以预测该细胞在中等温度胁迫(<32 °C)下进行PSII光化学的能力,这表明它可作为测量共生藻科热敏感性的一个指标。综合来看,我们的研究突出了光合共生藻科之间热敏感性的异质性,并为我们对温度诱导的珊瑚白化的理解增添了关键的解析度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dc1/9296599/34083751a32a/41396_2022_1243_Fig1_HTML.jpg

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