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ISOLATION AND PARTIAL CHARACTERIZATION OF THE PINK AND BLUE PIGMENTS OF POCILLOPORID AND ACROPORID CORALS

机译:蓝藻和粉珊瑚的粉红色和蓝色颜料的分离和部分表征

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The compounds responsible for the pink and blue colors of two families of hermatypic corals (Pocilloporidae, Acroporidae) from the southern Great Barrier Reef were isolated and biochemically characterized. Isolation of the pink pigment from Pocillopora damicornis (named pocilloporin, lambda(max) = 560 nm, 390 nm) revealed that it was a hydrophilic protein dimer with a native molecular weight of approximately 54 kD and subunits of 28 kD. The subunits are not linked by disulfide bonds. Attempts to dissociate the chromophore from the protein proved unsuccessful. Denaturing the protein with heat (60 degrees C) or 5% sodium dodecyl sulfate (SDS) removed the 560-nm absorbance peak without introducing a detectable bathochromic shift. In acetone, ethanol, ether, and chloroform, the pigment precipitates out of solution, leaving a colorless supernatant. These properties suggest that the protein and chromophore are covalently linked. Ion analysis revealed that the pigment does not have metal ions chelated to it. Coral pigments were also isolated from pink morphs of other pocilloporids, Seriatopora hystrix (lambda(max) = 560 nm) and Stylophora pistillata (lambda(max) = 560 nm); and from bluish regions of the acroporids, Acropora formosa (blue; lambda(max) = 590 nm) and Acropora digitifera (purple; lambda(max) = 580 nm). With the exception of A. formosa, all the corals examined had pigments with the same native (54 kD) and subunit (28 kD) molecular weights as those of P. damicornis. A. formosa pigment has a native molecular weight of about 82.6 kD and three subunits of 28 kD. The pigments isolated from each of these coral species have properties similar to those described for P. damicornis. Isolation and biochemical purification of the pigment enabled the exploration of the function of the pink pigment. Three possibilities were eliminated. The compound does not act as (i) a photo-protectant for shielding the photosynthetic pigments of symbiotic zooxanthellae against excessive irradiances, (ii) a fluorescent coupling agent for amplifying the levels of photosynthetically active radiation available for resident zooxanthellae, or (iii) a UV-screen against the high UV levels of shallow tropical marine environments.
机译:从大堡礁南部分离出了负责两个家族珊瑚(Pocilloporidae,Acroporidae)的粉色和蓝色的化合物,并进行了生化分析。从拟南芥(Pocillopora damicornis)分离出粉红色颜料(命名为pocilloporin,λ(最大)= 560 nm,390 nm)表明它是一种亲水性蛋白质二聚体,其天然分子量约为54 kD,亚基为28 kD。亚基不通过二硫键连接。尝试从蛋白质上解离发色团失败。通过加热(60摄氏度)或5%十二烷基硫酸钠(SDS)变性蛋白质可去除560 nm的吸收峰,而不会引入可检测的红移现象。在丙酮,乙醇,乙醚和氯仿中,颜料从溶液中沉淀出来,剩下无色上清液。这些性质表明蛋白质和生色团是共价连接的。离子分析表明该颜料没有螯合金属离子。还从其他孢子粉红色变体,Seriatopora hystrix(lambda(max)= 560 nm)和Stylophora pistillata(lambda(max)= 560 nm)的粉红色形态中分离出珊瑚色素。以及来自顶孢的蓝光区域,即阿波罗蝶(Acropora formosa)(蓝色;λ(max)= 590 nm)和指腹棘指(Acropora digitifera)(紫色; lambda(max)= 580 nm)。除福尔摩沙菌外,所有接受检查的珊瑚均具有与大麦假单胞菌相同的天然(54 kD)和亚单位(28 kD)分子量的色素。福寿菌色素的天然分子量约为82.6 kD,三个亚基为28 kD。从每种珊瑚物种中分离出的色素的性质与描述于大隐孢子虫的色素相似。颜料的分离和生化纯化能够探索粉红色颜料的功能。消除了三种可能性。该化合物不能用作(i)保护共生虫黄藻的光合色素免受过度辐照的光保护剂;(ii)荧光偶联剂,用于放大常驻虫黄藻可利用的光合活性辐射的水平;或(iii)a紫外线屏蔽剂可抵抗浅海热带海洋环境中的高紫外线含量。

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