Department of Life Science, College of Natural Sciences, Hanyang University, Seoul 04763, Republic of Korea.
Eugene Biotech Co. Ltd., Daejeon 34051, Republic of Korea.
J Microbiol Biotechnol. 2019 Sep 28;29(9):1453-1459. doi: 10.4014/jmb.1904.04053.
Zeaxanthin is an important pigment in the photo-protection mechanism of microalgae. However, zeaxanthin epoxidase, an enzyme involved in the accumulation and conversion of zeaxanthin, has not been extensively studied in microalgae. In this work, we report the expression pattern of zeaxanthin epoxidase in () at different light and diverse salinity conditions. To confirm the responsiveness to light conditions, the ZEP expression pattern was investigated in photoperiodic (16 h of light and 8 h of dark) and continuous (24 h of light and 0 h of dark) light conditions. mRNA expression levels in photoperiodic conditions fluctuated along with the light/dark cycle, whereas those in continuous light remained unchanged. In varying salinity conditions, the highest mRNA and protein levels were detected in cells cultured in 1.5 M NaCl, and ZEP expression levels in cells shifted from 0.6 M NaCl to 1.5 M NaCl increased gradually. These results show that mRNA expression of responds rapidly to the light/dark cycle or increased salinity, whereas changes in protein synthesis do not occur within a short period. Taken together, we show that DtZEP gene expression responds rapidly to light irradiation and hyperosmotic stress. In addition, expression patterns in light or salinity conditions are similar to those of higher plants, even though the habitat of is different.
玉米黄质是微藻光保护机制中的一种重要色素。然而,参与玉米黄质积累和转化的酶——玉米黄质环氧化酶,在微藻中尚未得到广泛研究。在这项工作中,我们报告了玉米黄质环氧化酶在 () 中的表达模式,以及在不同光照和盐度条件下的表达模式。为了确认对光照条件的响应,我们研究了玉米黄质环氧化酶在光周期(16 小时光照和 8 小时黑暗)和连续光照(24 小时光照和 0 小时黑暗)条件下的表达模式。在光周期条件下,mRNA 表达水平随光/暗周期波动,而在连续光照条件下则保持不变。在不同盐度条件下,在 1.5 M NaCl 培养的细胞中检测到最高的 mRNA 和蛋白质水平,并且从 0.6 M NaCl 转移到 1.5 M NaCl 的细胞中玉米黄质环氧化酶表达水平逐渐增加。这些结果表明,DtZEP 基因的 mRNA 表达对光/暗周期或高盐度迅速作出反应,而蛋白质合成的变化不会在短时间内发生。综上所述,我们表明 DtZEP 基因表达对光照和高渗胁迫迅速作出反应。此外,在光照或盐度条件下的表达模式与高等植物相似,尽管 的栖息地不同。