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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Composition of long chain alkenones and alkenoates as a function of growth temperature in marine haptophyte Tisochrysis lutea
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Composition of long chain alkenones and alkenoates as a function of growth temperature in marine haptophyte Tisochrysis lutea

机译:长链链霉菌和长链烯酮的组成与生长温度的关系

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摘要

We investigated the compositions of long chain alkenones and alkenoates in cultured strains of the marine haptophyte Tisochrysis lutea CCMP463 and T. lutea NIES-2590 (formerly classified as Isochrysis galbana). Both T. lutea strains grown at various temperatures of 15-35 degrees C could be characterized by the lack of tetraunsaturated alkenones and alkenoates in comparison with strains in other genera Isochrysis and Ruttnera, which are classified in the same family Isochrysidaceae and order Isochrysidales that contain alkenone-producing haptophytes. We found that T. lutea has a distinct alkenone response to temperature, which is characterized by high U37 -temperature sensitivity at 15-30 degrees C and continuing sensitivity at warm-end temperatures over 30 degrees C, where the other species fail to adapt. Both strains showed similar trends in alkenone compositions and alkenone unsaturation index temperature calibrations. In addition, both strains CCMP463 and NIES-2590 showed notably close phylogenetic relationships, even those that were collected from remote regions of the Atlantic Ocean, namely the Caribbean Sea and English Channel, where their habitats, particularly the sea surface temperature, are notably different. Considering previous published datasets, three genera, Isochrysis, Ruttnera and Tisochrysis, showed very different trends in the alkenone unsaturation index-temperature calibration. These results suggest that the lack of tetraunsaturated alkenones, warm-water oriented growth and the high sensitivity to growth temperature serve as distinct chemotaxonomic characteristics of T. lutea in the Isochrysidaceae family. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们调查了海洋触藻苔藓黄单胞菌CCMP463和T. lutea NIES-2590(以前归类为等鞭金藻)的培养菌株中长链烯酮和链烯酸酯的组成。与其他等鞭藻属和芸苔属中的菌株相比,在15-35摄氏度的不同温度下生长的两种T. lutea菌株的特征都在于缺乏四不饱和烯酮和链烯酸酯,这些菌株被归类于同鞭毛科和等鞭毛科的同一科。产生烯酮的触媒植物。我们发现T. lutea对温度具有明显的烯酮响应,其特征是在15-30摄氏度时具有很高的U37温度敏感性,而在超过30摄氏度的暖端温度下仍具有持续的敏感性,而其他物种则无法适应。两种菌株在烯酮组成和烯酮不饱和指数温度校准中均显示出相似的趋势。此外,菌株CCMP463和NIES-2590均显示出显着的亲缘关系,即使是从大西洋边远地区(即加勒比海和英吉利海峡)采集的菌株,其生境(尤其是海面温度)也明显不同。考虑到以前发布的数据集,等温线虫,芸苔属和铁线虫属的三个属在烯酮不饱和指数-温度校准中显示出非常不同的趋势。这些结果表明,缺乏四不饱和烯酮,温水导向的生长和对生长温度的高敏感性是异黄藻科中黄茶T. lutea独特的化学分类学特征。 (C)2016 Elsevier Ltd.保留所有权利。

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