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Cloning and molecular organization of the polyhydroxyalkanoic acid synthase gene (phaC) of Ralstonia eutropha strain B5786

机译:富营养小球藻B5786菌株多羟基链烷酸合酶基因(phaC)的克隆和分子组织

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摘要

Class I polyhydroxyalkanoic acid (PHA) synthase gene (phaC) of Ralstonia eutropha strain B5786 was cloned and characterized. R. eutropha B5786 features the ability to synthesize multicomponent PHAs with short- and medium-chain-length monomers from simple carbohydrate substrate. A correlation was made between the molecular structure of PHA synthase and substrate specificity and the ability of strain-producers to accumulate PHAs of this or that structure. A strong similarity of PHA synthase of R. eutropha strain B5786 with PHA synthase of R. eutropha strain H16, which, as opposed to strain B5786, enables to incorporate medium chain length PHAs if hexanoate is used as carbon source, exhibited 99%. A correlation between the structure of PHA synthase of B5786 strain with synthases of microorganisms which synthesize short and medium chain length PHAs similarly to B5786 strain, showed an identity level from 26 to 41% (homology with synthase of Rhodospirillum rubrum makes 41%, Ectothiorhodospira shaposhnikovii makes 26%, Aeromonas punctata makes 40%, Thiococcus pfennigii makes 28%, Rhodococcus ruber makes 38%, and with PhaCl and PhaC2 synthases of Pseudomonas sp. 61-3 makes 34 and 37%, respectively). This allows for speaking about the absence of a direct connection between the molecular organization of PHA synthases and their functional abilities, namely, the ability to synthesize PHAs of a particular composition.
机译:克隆并鉴定了富营养小球藻(Ralstonia eutropha)B5786的I类聚羟基链烷酸(PHA)合酶基因(phaC)。 R. eutropha B5786具有从简单的碳水化合物底物中合成具有短链和中链长度单体的多组分PHA的能力。在PHA合酶的分子结构和底物特异性与菌株生产者积累这种结构的PHA的能力之间建立了相关性。如果使用己酸作为碳源,则富营养芽孢杆菌菌株B5786的PHA合酶与富营养芽孢杆菌菌株H16的PHA合酶与菌株B5786的相似性很强,能够掺入中等链长的PHA。 B5786菌株的PHA合酶的结构与与B5786菌株相似的合成短链和中等链长PHA的微生物的合酶之间的相关性显示出26%到41%的同一性水平(与红螺旋藻合酶的同源性占41%,Ethtothiorhodospira shaposhnikovii假单胞菌占26%,点状气单胞菌占40%,芬欧球菌占28%,红球菌占38%,假单胞菌61-3的PhaCl和PhaC2合成酶占34%和37%。这可以说是在PHA合成酶的分子组织与其功能能力(即合成特定组成的PHA的能力)之间不存在直接联系的问题。

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