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Regulation of pH attenuates toxicity of a byproduct produced by an ethanologenic strain of Sphingomonas sp. A1 during ethanol fermentation from alginate

机译:pH值的调节减弱了鞘氨醇单胞菌的产乙醇菌株产生的副产物的毒性。海藻酸钠乙醇发酵过程中的A1

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摘要

Marine macroalgae is a promising carbon source that contains alginate and mannitol as major carbohydrates. A bioengineered ethanologenic strain of the bacterium Sphingomonas sp. A1 can produce ethanol from alginate, but not mannitol, whereas the yeast Saccharomyces paradoxus NBRC 0259–3 can produce ethanol from mannitol, but not alginate. Thus, one practical approach for converting both alginate and mannitol into ethanol would involve two-step fermentation, in which the ethanologenic bacterium initially converts alginate into ethanol, and then the yeast produces ethanol from mannitol. In this study, we found that, during fermentation from alginate, the ethanologenic bacterium lost viability and secreted toxic byproducts into the medium. These toxic byproducts inhibited bacterial growth and killed bacterial cells and also inhibited growth of S. paradoxus NBRC 0259–3. We discovered that adjusting the pH of the culture supernatant or the culture medium containing the toxic byproducts to 6.0 attenuated the toxicity toward both bacteria and yeast, and also extended the period of viability of the bacterium. Although continuous adjustment of pH to 6.0 failed to improve the ethanol productivity of this ethanologenic bacterium, this pH adjustment worked very well in the two-step fermentation due to the attenuation of toxicity toward S. paradoxus NBRC 0259–3. These findings provide information critical for establishment of a practical system for ethanol production from brown macroalgae.
机译:海洋大型藻类是一种有前途的碳源,其中包含藻酸盐和甘露醇作为主要碳水化合物。鞘氨醇单胞菌属细菌的生物工程产乙醇菌株。 A1可以从藻酸盐生产乙醇,而甘露醇则不能,而酵母Saccharomyces paradoxus NBRC 0259-3可以从甘露醇生产乙醇,而不能从藻酸盐生产乙醇。因此,一种将藻酸盐和甘露醇都转化为乙醇的实用方法将涉及两步发酵,其中产乙醇细菌首先将藻酸盐转化为乙醇,然后酵母从甘露醇生产乙醇。在这项研究中,我们发现在藻酸盐发酵过程中,产乙醇细菌丧失了活力,并向培养基中分泌了有毒的副产物。这些有毒副产物抑制细菌生长并杀死细菌细胞,还抑制悖论链球菌NBRC 0259-3的生长。我们发现将培养上清液或含有毒性副产物的培养基的pH调节至6.0可减弱对细菌和酵母的毒性,并且还延长了细菌的生存期。尽管将pH值连续调节至6.0并不能提高这种产乙醇细菌的乙醇生产率,但由于对S. paradoxus NBRC 0259-3的毒性减弱,因此这种pH调节在两步发酵中效果很好。这些发现为建立从褐藻生产乙醇的实用系统提供了至关重要的信息。

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