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Growth Characteristics of a Novel Nitrogen-Fixing Cellulolytic Bacterium

机译:新型固氮纤维素分解细菌的生长特性

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Growth characteristics of a cellulolytic nitrogen-fixing bacterium isolated from a marine shipworm by Waterbury et al. (J. B. Waterbury, C. B. Calloway, and R. D. Turner, Science 221:1401-1403, 1983) are described. When grown microaerobically, the bacterium exhibited doubling times of about 2 days in cellulose-supplemented synthetic medium devoid of combined nitrogen. Maximum growth was reached 12 to 16 days after inoculation. Growth optima for pH, temperature, and NaCl concentration were 8.5, 30 to 35°C, and 0.3 M, respectively. During growth the bacterium produced succinic acid (0.026%) and acetic acid (0.010%). Formic acid (0.010%) was produced during the stationary growth phase. No growth was observed when glucose was the sole carbon source. Cellobiose supported weak growth, while longer-chain-length cellodextrins supported extensive growth. Analysis of residual carbohydrates in the medium during growth indicated that the bacterium catabolized a terminal glucose moiety from the cellodextrin chain.
机译:沃特伯里(Waterbury)等人从海洋ship虫中分离出的纤维素分解固氮细菌的生长特性。 (J.B.Waterbury,C.B.Calloway和R.D.Turner,Science 221:1401-1403,1983)被描述。当在微需氧条件下生长时,该细菌在补充了纤维素的合成培养基中(不含混合氮)表现出约2天的倍增时间。接种后12至16天达到最大生长。 pH,温度和NaCl浓度的最佳生长分别为8.5、30至35°C和0.3M。在生长过程中,细菌产生琥珀酸(0.026%)和乙酸(0.010%)。在固定生长期产生甲酸(0.010%)。当葡萄糖是唯一的碳源时,没有观察到生长。纤维二糖支持较弱的生长,而较长链长的纤维糊精支持广泛的生长。生长过程中培养基中残留碳水化合物的分析表明,细菌分解了纤维糊精链中的末端葡萄糖部分。

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