Zavřel Tomáš, Očenášová Petra, Červený Jan
Department of Adaptive Biotechnologies, Global Change Research Institute CAS, Brno, Czech Republic.
PLoS One. 2017 Dec 7;12(12):e0189130. doi: 10.1371/journal.pone.0189130. eCollection 2017.
Synechocystis sp. PCC 6803 is a widely used model cyanobacterium, whose substrains can vary on both genotype and phenotype levels. Previously described phenotypic variations include ability of mixotrophic growth, ability of movement on agar plates and variations in pigments composition or cell size. In this study, we report for the first time significant variation among Synechocystis substrains in complex cellular traits such as growth rate, photosynthesis efficiency, cellular dry weight and cellular composition (including protein or carbohydrates content). We also confirmed previously reported differences in cell size. Synechocystis cultures were cultivated in controlled environment of flat panel photobioreactors under red, blue and white light of intensities up to 790 μmol(photons) m-2 s-1, temperatures 23°C-60°C, input CO2 concentrations ranging from 400 to 15 000 ppm and in BG11 cultivation medium with and without addition of NaCl. Three Synechocystis substrains were used for the comparative experiments: GT-L, GT-B (Brno, CZ) and PCC-B (Brno, CZ). Growth rates of Synechocystis GT-B were inhibited under high intensities of red light (585-670 nm), and growth rates of both substrains GT-B and PCC-B were inhibited under photons of wavelengths 485-585 nm and 670-700 nm. Synechocystis GT-B was more sensitive to low temperatures than the other two tested substrains, and Synechocystis GT-L was sensitive to the presence of NaCl in the cultivation media. The results suggest that stress sensitivity of commonly used Synechocystis substrains can strongly vary, similarly as glucose tolerance or motility as reported previously. Our study further supports the previous statement that emphasizes importance of proper Synechocystis substrains selection and awareness of phenotypical differences among Synechocystis substrains which is crucial for comparative and reproducible research. This is highly relevant for studies related to stress physiology and development of sustainable biotechnological applications.
聚球藻属蓝细菌PCC 6803是一种广泛使用的模式蓝藻,其亚菌株在基因型和表型水平上可能存在差异。先前描述的表型变异包括混合营养生长能力、在琼脂平板上的移动能力以及色素组成或细胞大小的变化。在本研究中,我们首次报道了聚球藻亚菌株在复杂细胞特性(如生长速率、光合作用效率、细胞干重和细胞组成(包括蛋白质或碳水化合物含量))方面存在显著差异。我们还证实了先前报道的细胞大小差异。聚球藻培养物在平板光生物反应器的可控环境中培养,光照为强度高达790 μmol(光子)m-2 s-1的红光、蓝光和白光组合,温度为23°C至60°C,输入二氧化碳浓度范围为400至15000 ppm,培养介质为添加和不添加氯化钠的BG11培养基。三个聚球藻亚菌株用于比较实验:GT-L、GT-B(捷克布尔诺)和PCC-B(捷克布尔诺)。聚球藻GT-B的生长速率在高强度红光(585-670 nm)下受到抑制,GT-B和PCC-B这两个亚菌株的生长速率在波长485-585 nm和670-700 nm的光下均受到抑制。聚球藻GT-B比其他两个测试亚菌株对低温更敏感,聚球藻GT-L对培养基中氯化钠的存在敏感。结果表明,常用聚球藻亚菌株的胁迫敏感性可能有很大差异,与先前报道的葡萄糖耐受性或运动性类似。我们的研究进一步支持了先前的观点,即强调正确选择聚球藻亚菌株以及认识到聚球藻亚菌株之间表型差异的重要性,这对于比较和可重复研究至关重要。这与胁迫生理学研究以及可持续生物技术应用的发展高度相关。