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首页> 外文期刊>Applied and Environmental Microbiology >Steady-State Growth and Chemical Composition of the Marine Chlorophyte Dunaliella tertiolecta in Nitrogen-Limited Continuous Cultures
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Steady-State Growth and Chemical Composition of the Marine Chlorophyte Dunaliella tertiolecta in Nitrogen-Limited Continuous Cultures

机译:氮限制连续培养条件下海洋绿藻杜氏藻的稳态生长和化学组成

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摘要

The marine chlorophyte Dunaliella tertiolecta was grown in continuous cultures under NH4+-N, NO2?-N, NO3?-N, and urea-N limitations. The effect of the nitrogen cell quota (Qn) on the steady-state growth rate (μ) was the same regardless of the N source. The relationship between μ and Qn was well described by the Droop equation, but only up to the true maximum growth rate ^μ (= cell washout rate). The ratio between the minimum cell quota (kQ) and the maximum cell quota (Qm) was 0.19. Hence, there is no substitute for determining ^μ experimentally. That there was no difference in growth response to different N sources suggests that no internal pooling of inorganic nitrogen occurred. Both the carbon (Qc) and phosphorus (Qp) cell quotas under N limitation increased with increasing μ in a threshold fashion: virtually no change in either cell quota up to ~0.8 ^μ, followed by a rapid and large increase up to ^μ. In addition, in the region of low μ, there was an increase in Qp with a decreasing medium N/P ratio of between 15 and 5 (by atoms). The results generally indicate the physiological limits in cellular constituency under N limitation. The usefulness of this information, however, in describing the response of natural populations of marine phytoplankton to transient nutrient exposures on the temporal and spatial microscales that most likely exist is of limited value.
机译:在NH4 + -N,NO2α-N,NO3β-N和尿素-N限制下,海洋绿化植物杜氏杜氏藻在连续培养中生长。氮源配额(Qn)对稳态生长率(μ)的影响相同,而与氮源无关。 μ和Qn之间的关系已由Droop方程很好地描述,但仅达到真正的最大生长速率^μ(=细胞洗脱速率)。最小单元配额(kQ)与最大单元配额(Qm)之比为0.19。因此,没有其他方法可以通过实验确定。对不同氮源的生长反应没有差异,表明没有发生无机氮的内部汇集。在N限制下,碳(Qc)和磷(Qp)的细胞配额都随着阈值的增加而随着μ的增加而增加:直到〜0.8 ^μ,两个细胞的配额几乎没有变化,随后迅速且大的增加直至^μ 。另外,在低μ的区域中,Qp增大,而介质N / P比率在15到5之间(按原子计)降低。结果通常表明在N限制下细胞组成的生理限制。但是,此信息在描述海洋浮游植物自然种群对最有可能存在的时间和空间微观尺度上的瞬时养分暴露的响应方面的价值有限。

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