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化学和遗传类胡萝卜素缺乏会延缓黑暗培养的眼虫生长。

Chemical and genetic carotenoid deficiency delays growth in dark-grown Euglena gracilis.

机构信息

Department of Biosciences, Faculty of Science and Engineering, Teikyo University, Utsunomiya 320-8551, Japan.

Microalgae Production Control Technology Laboratory, RIKEN Baton Zone Program, Yokohama 230-0045, Japan.

出版信息

Biosci Biotechnol Biochem. 2023 Apr 24;87(5):491-500. doi: 10.1093/bbb/zbad024.

Abstract

Light-independent functions of carotenoids in photosynthetic organisms are poorly understood. Here, we investigated the growth properties of microalga, Euglena gracilis, under altered light and temperature using norflurazon-treated carotenoid-deficient cells and genetically modified strains, including nonphotosynthetic SM-ZK and colorless cl4. Norflurazon treatment decreased carotenoid and chlorophyll contents, causing cell bleaching. SM-ZK strain had lower carotenoid content than wild-type (WT) strain, and it was below the detectable level in the cl4 strain. Norflurazon treatment decreased phytoene synthase EgCrtB levels, although EgcrtB was transcriptionally induced. Carotenoid deficiency in norflurazon-treated cells and the cl4 strain caused similar extents of delayed growth under light and dark conditions at 25 °C, indicating that carotenoids promote growth in darkness. Both WT and SM-ZK strains exhibited similar growth rates. Dark conditions at 20 °C enhanced the growth delay of norflurazon-treated cells and the cl4 strain. These results indicate that carotenoids impart environmental stress tolerance to E. gracilis in light-dependent and light-independent manners.

摘要

类胡萝卜素在光合生物中的光非依赖功能尚未被充分了解。在这里,我们利用诺氟唑处理的类胡萝卜素缺乏细胞和遗传修饰株系(包括非光合 SM-ZK 和无色 cl4),研究了微藻眼虫在改变的光照和温度下的生长特性。诺氟唑处理降低了类胡萝卜素和叶绿素的含量,导致细胞白化。SM-ZK 株系的类胡萝卜素含量低于野生型(WT)株系,在 cl4 株系中则低于检测水平。诺氟唑处理降低了类胡萝卜素生物合成酶 EgCrtB 的水平,尽管 EgcrtB 转录被诱导。在 25°C 下,光和暗条件下,诺氟唑处理的细胞和 cl4 株系的类胡萝卜素缺乏导致相似程度的生长延迟,表明类胡萝卜素促进黑暗中的生长。WT 和 SM-ZK 株系均表现出相似的生长速率。20°C 的暗条件增强了诺氟唑处理的细胞和 cl4 株系的生长延迟。这些结果表明,类胡萝卜素以依赖光和非依赖光的方式赋予眼虫对环境胁迫的耐受性。

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