Molot L A, Brown E J
Appl Environ Microbiol. 1986 Mar;51(3):524-31. doi: 10.1128/aem.51.3.524-531.1986.
Nutrient transport affinities of nutrient-starved microbial populations were measured as initial slopes of plots of limiting-nutrient transport rates versus extracellular limiting-nutrient concentrations. A method was devised for the determination of soluble reactive phosphate (Pi) affinity in Pi-limited continuous culture (aT), which was then used as an indicator of the effects of light/dark cycle (LD) perturbations on the temporal Pi transport abilities of three species of freshwater algae. Cell division was asynchronous for the green alga Selenastrum capricornutum grown in continuous cultures exposed to LD cycles. An apparent rhythm in aT for Pi was greatly affected by the population size parameter. Cell division was phased for the green alga Scenedesmus quadricauda grown in LD continuous culture. A rhythm in aT for Pi was not greatly affected by the biomass parameter. Cell division was also phased in LD continuous culture for the blue-green alga (cyanobacterium) Synechococcus Nägeli, but rhythms in other parameters could not be detected. Synechococcus Nägeli was an extremely efficient Pi transporter at low Pi concentrations in LD continuous culture, and so aT could not be calculated. The results demonstrate that aT is well suited to describing the temporal response of Pi transport in LD-perturbed, Pi-limited continuous culture.
营养匮乏的微生物群体的营养物质运输亲和力通过限制营养物质运输速率与细胞外限制营养物质浓度关系图的初始斜率来衡量。设计了一种方法来测定在磷限制的连续培养(aT)中可溶性活性磷(Pi)的亲和力,然后将其用作光/暗循环(LD)扰动对三种淡水藻类的瞬时磷运输能力影响的指标。在暴露于LD循环的连续培养中生长的绿藻羊角月牙藻,其细胞分裂是不同步的。Pi的aT中的明显节律受种群大小参数的影响很大。在LD连续培养中生长的绿藻四尾栅藻,其细胞分裂是分阶段的。Pi的aT中的节律受生物量参数的影响不大。在LD连续培养中,蓝藻(蓝细菌)纳氏聚球藻的细胞分裂也是分阶段的,但未检测到其他参数的节律。在LD连续培养中,低磷浓度下纳氏聚球藻是一种极其高效的磷转运体,因此无法计算aT。结果表明,aT非常适合描述在LD扰动、磷限制的连续培养中磷运输的瞬时响应。