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Butanol Production by a Butanol-Tolerant Strain of Clostridium acetobutylicum in Extruded Corn Broth

机译:玉米汁中丙酮丁醇梭菌的耐丁醇菌株生产丁醇

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摘要

By employing serial enrichment, a derivative of Clostridium acetobutylicum ATCC 824 was obtained which grew at concentrations of butanol that prevented growth of the wild-type strain. The parent strain demonstrated a negative growth rate at 15 g of butanol/liter, whereas the SA-1 mutant was still able to grow at a rate which was 66% of the uninhibited control. SA-1 produced consistently higher concentrations of butanol (from 5 to 14%) and lower concentrations of acetone (12.5 to 40%) than the wild-type strain in 4 to 20% extruded corn broth (ECB). Although the highest concentration of butanol was produced by SA-1 and the wild-type strain in 14% ECB, the best solvent ratio with respect to optimizing butanol and decreasing acetone occurred between 4 and 8% ECB for SA-1. SA-1 demonstrated higher conversion efficiency to butanol than the wild-type strain at every concentration of ECB tested. Characterization of the wild-type and SA-1 strain in 6% ECB demonstrated the superiority of the latter in terms of growth rate, time of onset of butanol production, carbohydrate utilization, pH resistance, and final butanol concentration in the fermentation broth.
机译:通过采用连续富集,获得了丙酮丁醇梭菌ATCC 824的衍生物,该衍生物在阻止野生型菌株生长的丁醇浓度下生长。亲本菌株在15 g丁醇/升下显示出负的生长速率,而SA-1突变体仍然能够以未抑制对照的66%的速率生长。与野生型菌株相比,SA-1在4%至20%的玉米汤(ECB)中产生的丁醇浓度始终较高(从5%到14%)和丙酮浓度(从12.5%到40%)较低。尽管SA-1和野生型菌株在14%的ECB中产生的最高丁醇浓度,但对于SA-1而言,相对于优化丁醇和减少丙酮的最佳溶剂比率为4%至8%。在每种测试的ECB浓度下,SA-1均比野生型菌株具有更高的向丁醇的转化效率。在6%ECB中对野生型和SA-1菌株进行表征,显示了后者在生长速率,丁醇生产开始时间,碳水化合物利用,pH抵抗性以及发酵液中最终丁醇浓度方面的优势。

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