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Extraction protocols for the quantification of phycobilins in aqueous phytoplankton extracts

机译:浮游植物水提取物中藻蓝蛋白定量的提取方案

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摘要

Phycobiliproteins are light harvesting pigments in cryptophytes, cyanobacteria, and rhodophytes that allow these organisms to absorb light in the green and orange regions of the electromagnetic spectrum. Unlike chlorophylls and carotenoids, however, phycobilins are rarely quantified as part of routine photobiological studies because they require different extraction protocols. The objectives of this study were (1) to compare 10 existing methods to determine that with the highest extraction efficiency and (2) to determine the maximum time limit for the storage of phycobilins before degradation. Cells of the cryptophyte Rhodomonas salina and the cyanobacterium Synechococcus bacillaris were harvested either by centrifugation or filtration and then subjected to lyophilization, mechanical disruption, or freeze-thaw techniques. The extraction efficiency for pigments in cells collected on glass fiber filters was always <32 +/- 5% and thus always significantly lower than in samples harvested by centrifugation, which had extraction efficiencies of 53 +/- 6-98 +/- 11%. Disruption of cells by freezing-thawing and sonication both resulted in significantly higher (ANOVA, p<0.01) extraction efficiencies than disruption with a tissue grinder. Storage of samples at -80 degrees C showed no significant pigment degradation over the course of 24 weeks.
机译:藻胆蛋白是隐藻类植物,蓝细菌和红藻类植物中的光收集色素,它们使这些生物体能够吸收电磁光谱的绿色和橙色区域中的光。与叶绿素和类胡萝卜素不同,藻胆素很少作为常规光生物学研究的一部分进行定量,因为它们需要不同的提取方案。这项研究的目的是(1)比较10种现有方法以确定具有最高提取效率的方法,以及(2)确定降解之前藻蓝蛋白的最大保存期限。通过离心或过滤来收获隐藻类红景天盐藻和蓝藻细菌的细胞,然后进行冻干,机械破碎或冻融技术。在玻璃纤维过滤器上收集的细胞中色素的提取效率始终<32 +/- 5%,因此始终显着低于通过离心收集的样品,后者的提取效率为53 +/- 6-98 +/- 11% 。通过冷冻-解冻和超声处理对细胞的破坏均导致提取效率(ANOVA,p <0.01)显着高于使用组织磨床的破坏。样品在-80摄氏度下的储存在24周内未显示出明显的颜料降解。

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