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Effects of intracellular poly(3-hydroxybutyrate) reserves on physiological-biochemical properties and growth of Ralstonia eutropha

机译:细胞内聚3-羟基丁酸酯储备对富营养小球藻的生理生化特性和生长的影响

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摘要

Microbial polyhydroxyalkanoates (PHAs), because of their well studied complex physiology and commercial potential, are vehicles for carbon and potential storage reduction for many microbial species. Even with the wealth of studies about microbial PHAs in the scientific literature, polymer accumulation and degradation are still not comprehensively understood. Poly(3-hydroxybutyrate) (P3HB) granule formation and polymer mobility were studied here in the bacterium Ralstonia eutropha strain B5786 in autotrophic cultures. Electron microscopy studies revealed decreasing cell size concomitant with enlargement of size and number of intracellular granules, and inhibition of cell division during intracellular polymer production. Activities of key P3HB biosynthetic enzymes demonstrated correlations with each other during polymer accumulation, suggesting an intricately regulated P3HB cycle in autotrophically grown R. eutropha cells. ? 2012 .
机译:微生物多羟基链烷酸酯(PHA),由于其经过深入研究的复杂生理学和商业潜力,是许多微生物的碳载体和潜在的储藏减少的载体。即使在科学文献中对微生物PHAs进行了大量研究,聚合物的积累和降解仍未得到全面了解。聚(3-羟基丁酸酯)(P3HB)颗粒的形成和聚合物的迁移性是在自养性富营养化细菌Ralstonia eutropha B5786中进行的。电子显微镜研究表明,细胞大小的减少与细胞内颗粒的大小和数量的增加相伴,并抑制了细胞内聚合物生产过程中的细胞分裂。关键的P3HB生物合成酶的活性在聚合物积累过程中显示出相互之间的相关性,这表明自养性富营养的富营养R. eutropha细胞中的P3HB循环受到复杂调控。 ? 2012年。

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