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Growth, Nitrogen Fixation, and Spectral Attenuation in Cultivated Trichodesmium Species

机译:栽培毛线虫物种的生长,固氮和光谱衰减

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Physiological studies of Trichodesmium species have been hindered by difficulties in maintaining actively growing, nitrogen-fixing cultures. Previous cultivation successes have not been widely duplicated. We present here a simple modified seawater medium and handling techniques which have been used to maintain actively growing Trichodesmium thiebautii in laboratory culture for over 1 year. The cultured population, isolated from coastal Atlantic waters, has a growth rate of 0.23 division day-1 and exhibits light-dependent nitrogen fixation during exponential growth. Various morphologies, including solitary trichomes, and aggregates (spherical puffs and fusiform tufts) are present during growth. Spectral and scalar irradiance were measured within naturally occurring (coastal Atlantic) aggregates with small (diameter, 50 to 70 μm) spherical fiber-optic sensors. In contrast to naturally occurring puffs, cultivated Trichodesmium aggregates exhibited spectral properties consistent with low-light adaptation. Cultivated puff-type aggregates were also examined by using oxygen microelectrodes. The simple medium and approach used for cultivation should be easily reproducible and amenable to further manipulations and modifications useful for physiological studies of Trichodesmium spp. in culture.
机译:毛状线虫物种的生理研究由于难以维持活跃生长的固氮培养而受到阻碍。先前的栽培成功尚未得到广泛复制。我们在这里介绍一种简单的改良海水培养基和处理技术,这些技术已用于在实验室培养中保持活跃生长的铁线虫(Trichodesmium thiebautii)一年以上。从大西洋沿海水域分离出来的养殖种群在第1天的生长速率为0.23,在指数生长过程中表现出依赖光的固氮作用。生长期间会出现各种形态,包括孤立的毛状体和聚集体(球形粉扑和梭形簇)。使用小的(直径为50至70μm)球形光纤传感器在自然发生的(沿海大西洋)聚集体中测量光谱和标量辐照度。与自然产生的粉扑相反,栽培的毛滴虫聚集体表现出与弱光适应一致的光谱特性。还使用氧气微电极检查了培养的粉扑型团聚体。用于培养的简单培养基和方法应易于重现,并应进行进一步的操作和修饰,以用于对Trichodesmium spp进行生理研究。在文化中。

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