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Formaldehyde incorporation by a new methylotroph (L3).

机译:通过新的甲基营养素(L3)引入甲醛。

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A number of bacterial strains have been isolated and investigated in our search for a promising organism in the production of single-cell protein from methanol. Strain L3 among these isolates was identified as an obligate methylotroph which grew only on methanol and formaldehyde as the sole sources of carbon and energy. The organism also grew well in batch and chemostat mixed-substrate cultures containing methanol, formaldehyde, and formate. Although formate was not utilized as a sole carbon and energy source, it was readily taken up and oxidized by either formaldehyde- or methanol-grown cells. The organism incorporated carbon by means of the ribulose monophosphate pathway when growing on either methanol, formaldehyde, or various mixtures of C1 compounds. Its C1-oxidation enzymes included phenazine methosulfate-linked methanol and formaldehyde dehydrogenase and a nicotinamide adenine dinucleotide-linked formate dehydrogenase. Identical inhibition by formaldehyde of the first two dehydrogenases suggested that they are actually the same enzyme. The organism had a rapid growth rate, a high cell yield in the chemostat, a high protein content, and a favorable amino acid distribution for use as a source of single-cell protein. Of special interest was the ability of the organism to utilize formaldehyde via the ribulose monophosphate cycle.
机译:已经分离出许多细菌菌株,并在我们的研究中进行了调查,以寻找一种从甲醇生产单细胞蛋白质的有前途的生物。在这些分离株中,菌株L3被鉴定为专性甲基营养菌,仅在甲醇和甲醛作为唯一的碳和能量来源时生长。该生物在含有甲醇,甲醛和甲酸盐的分批和化学恒温混合底物培养物中也生长良好。尽管甲酸盐没有被用作唯一的碳和能源,但它很容易被甲醛或甲醇生长的电池吸收并氧化。当在甲醇,甲醛或C1化合物的各种混合物上生长时,生物体通过核糖一磷酸途径结合碳。它的C1氧化酶包括吩嗪硫酸甲酯连接的甲醇和甲醛脱氢酶以及烟酰胺腺嘌呤二核苷酸连接的甲酸脱氢酶。甲醛对前两种脱氢酶的抑制作用相同,表明它们实际上是相同的酶。该生物体具有快速的生长速度,在恒化器中的高细胞产率,高的蛋白质含量以及有利的氨基酸分布,可用作单细胞蛋白质的来源。特别令人感兴趣的是生物体通过核糖一磷酸循环利用甲醛的能力。

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