Kashimoto Tomonori, Miyake Keita, Sato Mayuko, Maeda Kaisei, Matsumoto Chikahiro, Ikeuchi Masahiko, Toyooka Kiminori, Watanabe Satoru, Kanesaki Yu, Narikawa Rei
Department of Biological Science, Faculty of Science, Shizuoka University.
RIKEN Center for Sustainable Resource Science.
J Gen Appl Microbiol. 2020 Jun 17;66(2):106-115. doi: 10.2323/jgam.2019.11.008. Epub 2020 Mar 7.
The cyanobacterium Acaryochloris marina MBIC 11017 (A. marina 11017) possesses chlorophyll d (Chl. d) peaking at 698 nm as photosystem reaction center pigments, instead of chlorophyll a (Chl. a) peaking at 665 nm. About 95% of the total chlorophylls is Chl. d in A. marina 11017. In addition, A. marina 11017 possesses phycobilisome (PBS) supercomplex to harvest orange light and to transfer the absorbing energy to the photosystems. In this context, A. marina 11017 utilizes both far-red and orange light as the photosynthetic energy source. In the present study, we incubated A. marina 11017 cells under monochromatic orange and far-red light conditions and performed transcriptional and morphological studies by RNA-seq analysis and electron microscopy. Cellular absorption spectra, transcriptomic profiles, and microscopic observations demonstrated that PBS was highly accumulated under an orange light condition relative to a far-red light condition. Notably, transcription of one cpcBA operon encoding the phycobiliprotein of the phycocyanin was up-regulated under the orange light condition, but another operon was constitutively expressed under both conditions, indicating functional diversification of these two operons for light harvesting. Taking the other observations into consideration, we could illustrate the photoacclimation processes of A. marina 11017 in response to orange and far-red light conditions in detail.
蓝藻滨海红藻MBIC 11017(滨海红藻11017)具有在698 nm处达到峰值的叶绿素d(Chl. d)作为光系统反应中心色素,而非在665 nm处达到峰值的叶绿素a(Chl. a)。在滨海红藻11017中,约95%的总叶绿素为Chl. d。此外,滨海红藻11017拥有藻胆体(PBS)超复合体,用于捕获橙光并将吸收的能量传递给光系统。在此背景下,滨海红藻11017利用远红光和橙光作为光合能源。在本研究中,我们将滨海红藻11017细胞置于单色橙光和远红光条件下培养,并通过RNA测序分析和电子显微镜进行转录和形态学研究。细胞吸收光谱、转录组图谱和显微镜观察表明,相对于远红光条件,PBS在橙光条件下高度积累。值得注意的是,编码藻蓝蛋白藻胆蛋白的一个cpcBA操纵子的转录在橙光条件下上调,但另一个操纵子在两种条件下均组成性表达,表明这两个操纵子在光捕获方面的功能多样化。综合其他观察结果,我们可以详细阐述滨海红藻11017响应橙光和远红光条件的光适应过程。