Funk Christiane, Alami Meriem, Tibiletti Tania, Green Beverley R
Department of Chemistry, Umeå University, S-90187 Umeå, Sweden.
Biochim Biophys Acta. 2011 Jul;1807(7):841-6. doi: 10.1016/j.bbabio.2011.03.011. Epub 2011 Apr 1.
Cryptophytes like the cryptomonad Guillardia theta are part of the marine phytoplankton and therefore major players in global carbon and biogeochemical cycles. Despite the importance for the cell in being able to cope with large changes in illumination on a daily basis, very little is known about photoprotection mechanisms in cryptophytes. Here, we show that Guillardia theta is able to perform non-photochemical quenching, although none of the usual xanthophyll cycle pigments (e.g., zeaxanthin, diadinoxanthin, diatoxanthin) are present at detectable levels. Instead, acclimation to high light intensity seems to involve an increase of alloxanthin. Guillardia theta has genes for 2 one-helix "light-harvesting-like" proteins, related to some cyanobacterial genes which are induced in response to high light stress. Both the plastid-encoded gene (hlipP) and the nucleomorph-encoded gene (HlipNm) are expressed, but transcript levels decrease rather than increase during high light exposure, suggesting that they are not involved in a high light stress response. The HlipNm protein was detected with a specific antibody; expression was constant, independent of the light exposure.
像隐藻 Guillardia theta 这样的隐藻是海洋浮游植物的一部分,因此是全球碳和生物地球化学循环的主要参与者。尽管细胞能够应对日常光照的巨大变化至关重要,但关于隐藻的光保护机制却知之甚少。在这里,我们表明 Guillardia theta 能够进行非光化学猝灭,尽管在可检测水平上不存在任何常见的叶黄素循环色素(例如玉米黄质、二乙叉二氢卟吩色素、硅藻黄质)。相反,对高光强度的适应似乎涉及别藻蓝素的增加。Guillardia theta 有两个单螺旋“类捕光”蛋白的基因,与一些响应高光胁迫而被诱导的蓝细菌基因相关。质体编码基因(hlipP)和核仁编码基因(HlipNm)都有表达,但在高光照射期间转录水平下降而不是增加,这表明它们不参与高光胁迫反应。用特异性抗体检测到了 HlipNm 蛋白;其表达是恒定的,与光照无关。