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首页> 外文期刊>日本微生物資源学会誌: Official Publication of the Japan Society for Culture Collections >Polyamine analysis of unicellular, colonial, and multicellular green algae
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Polyamine analysis of unicellular, colonial, and multicellular green algae

机译:单细胞,殖民和多细胞绿藻的多胺分析

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摘要

To obtain the relation between cellular polyamine distribution profiles and multicellular evolution in green algae, we acid-extracted polyamines from 59 additional unicellular, colonial and multicellular green-algal samples (52 species), newly analyzed them with HPLC and HPGC, and compared them with 124 previously analyzed green algal polyamine profiles. Tetra-amines, norspermine and/or spermine, which are distributed as major polyamines predominantly in multicellular, macro green algae, were found also in unicellular photobiontic Trebouxia species and endosymbiotic Chlorella variabilis (Trebouxiophyceae), respectively. In the class Chlorophyceae, colonial freshwater Volvox, Pleodorina, Eudorina, Yamagishiella, Pandorina, Tetrabaena and Gonium (Volvocales) always contain putrescine, norspermidine and spermidine as major polyamines, similar to unicellular Chlamydomonas and Haematococcus, indicating that there is no correlation between their colony-forming and polyamine profiles. A novel triamine, aminobutylcadaverine, homospermidine and homospermine were all detected as minor polyamines in another colonial alga, Westella (Sphaeropleales). Furthermore, the aminobutylcadaverine level increased, and novel tetra-amines N~1-aminopentylspermidine and N~8-aminopentylspermidine appeared in a culture supplemented with 1 mM cadaverine. The occurrence of thermospermine was limited in multicellular thallic freshwater Prasiola (Trebouxiophyceae) and multicellular thallic marine Ulva (Ulvophyceae). Caldopentamine. homocaldopentamine and/or thermopentamine were distributed as minor polyamines in unicellular coenocytic Codium, multicellular branched-filamentous Aegagropila, thallic Monostroma (Ulvophyceae) and filamentous Spirogyra (Zygnematophyceae) in addition to Prasiola and Ulva, suggesting that the occurrence of penta-amines is related to multicellular and macro green-algal evolution.
机译:为了获得绿藻中细胞多胺分布分布和多细胞演化之间的关系,我们将酸提取的多胺从59个额外的单细胞,殖民和多细胞生绿 - 藻类样品(52种)进行,新分析了HPLC和HPGC,并将其与124以前分析了绿藻多胺型材。在单细胞光导藻藻生物和硫代昔核黄藻藻(Trebouxiophyceae)中也发现了作为主要多胺的四胺,Norsmine和/或精霉菌分布为主要多胺,其分布为多细胞宏观绿藻。在类血氯霉菌中,殖民地淡水沃尔沃毒,葡萄酒般的淡水芦荟,山羊氏菌,潘多琳娜,十四钟和山脉(Volvocales)总是含有普雷氏菌素,诺尔普林丁和亚精胺作为主要的多胺,类似于单细胞衣原体和血清麻痹,表明他们的殖民地之间没有相关性 - 形成和多胺型材。新型三胺,氨基丁酰甲酰甲酰胺,甲酰胺和蛋白质全部被检测为另一种殖民地藻类(Sphaeropleales)中的轻微多胺。此外,氨基丁基酰甲酰胺水平增加,新的四胺N〜1-氨基戊基哌啶和N〜8-氨基戊基哌啶氨基出现在补充有1mM尸胺的培养物中。热焦氨葡萄酒的发生在多细胞晶粒淡水proasiola(Trebouxiophyceae)和多细胞铊母线Ulva(Ulvophyceae)中有限。 Caldopentamine。同性热戊胺和/或热胺分布为单细胞结尼霉菌密码子,多细胞分支 - 丝状AEGAGROPILA,铊单胞瘤(ULVOPHYCEAE)和丝状螺菌(ZYGNEMATOOPOOPOSEAE)除了PRASIOLA和ULVA之外,表明五胺胺发生有关多细胞和宏观绿藻进化。

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