首页> 外文OA文献 >Nicotinate catabolism is dispensable and nicotinate anabolism is crucial in Azorhizobium caulinodans growing in batch culture and chemostat culture on N2 as The N source.
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Nicotinate catabolism is dispensable and nicotinate anabolism is crucial in Azorhizobium caulinodans growing in batch culture and chemostat culture on N2 as The N source.

机译:烟酸酯分解代谢是可有可无的,而烟酸酯合成代谢在以N2为氮源的分批培养和恒化培养中生长的固氮假单胞菌至关重要。

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摘要

When Azorhizobium caulinodans was grown in chemostat cultures with N2 as the N source at a constant dilution rate of 0.1 h-1 in media with a constant concentration (50 mM) of succinate and variable concentrations (1.5 to 585 microM) of nicotinate, neither the growth yield on succinate, the specific rate of O2 consumption, nor the specific rate of CO2 production showed linear regression with the concentration of nicotinate. Moreover, for transient continuous cultures in which the nicotinate concentration was gradually lowered, growth parameters remained unchanged until an apparently critical level of 0.7 microM nicotinate was reached. Below this nicotinate level, an immediate washout of the chemostat population began. A. caulinodans nicotinate hydroxylase-negative mutant 61007, unable to catabolize nicotinate, and the wild type behaved similarly. Thus, for continuous cultures supplied with N2 as the N source, submicromolar concentrations of nicotinate both sustained pyridine nucleotide biosynthesis at sufficient levels and precluded the use of nicotinate as a catabolic substrate. Furthermore, when more nicotinate was provided, dual succinate-nicotinate limitation in continuous cultures did not occur. Finally, when nicotinate is present in suboptimal concentrations, the specific growth rate is directly proportional to the amount of nicotinate present per unit of biomass. By contrast, in batch cultures with different nicotinate concentrations and with either succinate or lactate as the carbon and energy source, anomalous growth curves were obtained. With a low concentration (1.5 microM) of nicotinate, growth on N2 occurred, albeit at low rates. With a high concentration (195 microM) of nicotinate, growth on N2 was temporarily stimulated, but nicotinate was quickly exhausted and growth was thereafter nicotinate limited. Continuous supplementation of batch cultures with nicotinate allowed only transient exponential growth followed by linear growth. Thus, also for batch cultures, nicotinate catabolism is dispensable, although a high concentration of nicotinate temporarily stimulates growth on N2. Ut us concluded that A. caulinodans is a true diazotroph.
机译:当以N2作为氮源的恒化细菌培养恒生固氮假单胞菌以固定浓度(50 mM)琥珀酸盐和可变浓度(1.5至585 microM)烟酸盐的培养基中以0.1 h-1的恒定稀释率生长时,琥珀酸盐的生长产量,O2消耗的特定速率或CO2产生的特定速率均与烟酸盐的浓度呈线性回归。此外,对于烟酸浓度逐渐降低的瞬时连续培养,生长参数保持不变,直到达到0.7 microM烟酸的明显临界水平。低于此烟酸盐水平,立即开始洗净化粪池种群。 A. caulinodans烟酸羟化酶阴性突变体61007,无法分解烟酸,野生型表现相似。因此,对于以N2为氮源的连续培养,烟酸的亚微摩尔浓度既能维持足够水平的吡啶核苷酸生物合成,又不能使用烟酸作为分解代谢底物。此外,当提供更多的烟酸酯时,连续培养中不会出现双琥珀酸酯-烟酸酯限制。最后,当烟酸以次佳的浓度存在时,比生长速度与每单位生物量中烟酸的含量成正比。相反,在具有不同烟酸盐浓度并且以琥珀酸盐或乳酸盐作为碳和能量源的分批培养物中,获得了异常的生长曲线。烟酸盐浓度低(1.5 microM)时,尽管速率低,但仍在N2上生长。高浓度(195 microM)的烟酸盐会暂时刺激N2的生长,但烟酸盐很快就被耗尽,此后烟酸盐的生长受到限制。用烟酸酯连续补充分批培养物仅允许瞬时指数生长,然后线性生长。因此,对于分批培养,烟酸分解代谢也是必需的,尽管高浓度的烟酸暂时刺激了N2的生长。我们得出的结论是A. caulinodans是真正的重氮营养菌。

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