Ramsey U P, Bird C J, Shacklock P F, Laycock M V, Wright J L
Institute for Marine Biosciences, National Research Council, Halifax, Nova Scotia, Canada.
Nat Toxins. 1994;2(5):286-92. doi: 10.1002/nt.2620020507.
The distribution of kainic acid among various red algae was investigated. Analysis of free amino acids from different populations of Palmaria palmata showed that some were unable to accumulate kainic acid to detectable concentrations, whereas in two dwarf mutants it was a major component of the free amino acid composition. The amino acid profiles were also examined for unknown amino acids in the search for possible intermediates in kainic acid biosynthesis. The only unknown amino acid present in P. palmata extracts was isolated and identified by NMR spectroscopy as 1'-hydroxykainic acid. This compound was found in all samples that contained kainic acid. To investigate the effect of growth conditions on kainic acid production different strains of P. palmata were grown at 5, 10, and 15 degrees C with or without added nitrate. No effect on production was observed, suggesting that the growth conditions in these experiments do not affect the level of gene expression in the pathway of kainic acid biosynthesis. Furthermore, changing the growth conditions did not induce synthesis of kainic acid in the non-producing strains of Palmariales.
研究了海藻酸在各种红藻中的分布情况。对不同群体的掌状红皮藻游离氨基酸的分析表明,有些群体无法积累可检测浓度的海藻酸,而在两个矮化突变体中,海藻酸是游离氨基酸组成的主要成分。还对氨基酸谱进行了检测,以寻找海藻酸生物合成中可能的中间体的未知氨基酸。掌状红皮藻提取物中存在的唯一未知氨基酸通过核磁共振光谱法分离并鉴定为1'-羟基海藻酸。在所有含有海藻酸的样品中都发现了这种化合物。为了研究生长条件对海藻酸产量的影响,在添加或不添加硝酸盐的情况下,将不同菌株的掌状红皮藻在5、10和15摄氏度下培养。未观察到对产量的影响,这表明这些实验中的生长条件不会影响海藻酸生物合成途径中的基因表达水平。此外,改变生长条件不会在非产海藻酸的羽藻目菌株中诱导海藻酸的合成。