Department of Biology, University of Ottawa, Ottawa, Ontario, Canada.
Department of Biology and the Biotron Centre for Experimental Climate Change Research, University of Western Ontario, London, Ontario, Canada.
Plant Cell Environ. 2022 Jan;45(1):156-177. doi: 10.1111/pce.14203. Epub 2021 Nov 2.
The Antarctic green alga Chlamydomonas sp. UWO241 is an obligate psychrophile that thrives in the cold (4-6°C) but is unable to survive at temperatures ≥18°C. Little is known how exposure to heat affects its physiology or whether it mounts a heat stress response in a manner comparable to mesophiles. Here, we dissect the responses of UWO241 to temperature stress by examining its growth, primary metabolome and transcriptome under steady-state low temperature and heat stress conditions. In comparison with Chlamydomonas reinhardtii, UWO241 constitutively accumulates metabolites and proteins commonly considered as stress markers, including soluble sugars, antioxidants, polyamines, and heat shock proteins to ensure efficient protein folding at low temperatures. We propose that this results from life at extreme conditions. A shift from 4°C to a non-permissive temperature of 24°C alters the UWO241 primary metabolome and transcriptome, but growth of UWO241 at higher permissive temperatures (10 and 15°C) does not provide enhanced heat protection. UWO241 also fails to induce the accumulation of HSPs when exposed to heat, suggesting that it has lost the ability to fine-tune its heat stress response. Our work adds to the growing body of research on temperature stress in psychrophiles, many of which are threatened by climate change.
南极绿藻 Chlamydomonas sp. UWO241 是一种专性嗜冷菌,在低温(4-6°C)下生长旺盛,但不能在温度≥18°C 的环境中生存。目前对于热暴露如何影响其生理机能,以及它是否以类似于中温生物的方式产生热应激反应知之甚少。在这里,我们通过研究 UWO241 在稳态低温和热应激条件下的生长、初级代谢组和转录组,来剖析其对温度应激的反应。与 Chlamydomonas reinhardtii 相比,UWO241 持续积累通常被认为是应激标志物的代谢物和蛋白质,包括可溶性糖、抗氧化剂、多胺和热激蛋白,以确保在低温下有效折叠蛋白质。我们提出,这是由于其在极端条件下的生存。从 4°C 转变为非许可温度 24°C 会改变 UWO241 的初级代谢组和转录组,但 UWO241 在较高许可温度(10°C 和 15°C)下的生长并不能提供增强的耐热保护。当 UWO241 暴露在热环境中时,它也不会诱导 HSP 的积累,这表明它已经失去了微调其热应激反应的能力。我们的工作增加了对嗜冷菌温度应激的研究,许多嗜冷菌受到气候变化的威胁。