van Leeuwe Maria A, Visser Ronald J W, Stefels Jacqueline
Ecophysiology of Plants, Centre for Life Sciences, University of Groningen, PO Box 11103, Groningen, 9700 CC, the Netherlands.
Dept. Ocean Ecosystems, Centre for Life Sciences, University of Groningen, PO Box 11103, Groningen, 9700 CC, the Netherlands.
J Phycol. 2014 Dec;50(6):1070-80. doi: 10.1111/jpy.12238. Epub 2014 Oct 27.
The pigment composition of Phaeocystis antarctica was monitored under various conditions of light, temperature, salinity, and iron. 19'-Hexanoyloxyfucoxanthin (Hex-fuco) always constituted the major light-harvesting pigment, with remarkably stable ratios of Hex-fuco-to-chl a under the various environmental conditions. Increased pigment-to-chl a ratios at low irradiance confirmed the light-harvesting function of Fucoxanthin (Fuco), 19'-Hexanoyloxy-4-ketofucoxanthin (Hex-kfuco), 19'-butanoyloxyfucoxanthin (But-fuco), and chl c2 and c3. Increased pigment-to-chl a ratios at high irradiance, low iron concentrations, and to a lesser extent at high salinity confirmed the photoprotective function of diadinoxanthin, diatoxanthin, and ß,ß-carotene. Pigment ratios were not always according to expectations. The consistent increase in But-fuco/chl at high temperature, high salinity, and low iron suggests a role in photoprotection rather than in light harvesting. Low Hex-kfuco/chl ratios at high salinity were consistent with a role as light harvester, but the high ratios at high temperature were not, leaving the function of Hex-kfuco enigmatic. Dedicated experiments were performed to test whether or not the light-harvesting pigment Fuco could be converted into its structural relative Hex-fuco, and vice versa, in response to exposure to light shifts. Rapid conversions could not be confirmed, but long-term conversions cannot be excluded. New pigment ratios are proposed for chemotaxonomic applications. The ratios will improve pigment-based diagnosis of algal species in waters dominated by P. antarctica.
在光照、温度、盐度和铁的各种条件下,对南极褐藻的色素组成进行了监测。19'-己酰氧基岩藻黄素(Hex-fuco)始终构成主要的捕光色素,在各种环境条件下,Hex-fuco与叶绿素a的比例显著稳定。低辐照度下色素与叶绿素a比例的增加证实了岩藻黄素(Fuco)、19'-己酰氧基-4-酮基岩藻黄素(Hex-kfuco)、19'-丁酰氧基岩藻黄素(But-fuco)以及叶绿素c2和c3的捕光功能。高辐照度、低铁浓度以及在较小程度上高盐度下色素与叶绿素a比例的增加证实了二丁基甲藻黄素、二丁基甲藻黄质和β,β-胡萝卜素的光保护功能。色素比例并不总是符合预期。在高温、高盐度和低铁条件下,But-fuco/叶绿素的持续增加表明其在光保护而非捕光方面发挥作用。高盐度下低Hex-kfuco/叶绿素比例与作为捕光色素的作用一致,但高温下的高比例并非如此,这使得Hex-kfuco的功能成谜。进行了专门的实验,以测试捕光色素Fuco是否能响应光照变化而转化为其结构相关物Hex-fuco,反之亦然。虽然无法证实快速转化,但不能排除长期转化的可能性。提出了新的色素比例用于化学分类学应用。这些比例将改善在以南极褐藻为主的水域中基于色素对藻类物种的诊断。