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Ecomorphological variability of Arthrospira fusiformis (Cyanoprokaryota) in African soda lakes

机译:非洲苏打湖中钩形节肢动物的生态形态变异

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摘要

The filamentous spirally coiled cyanoprokaryote Arthrospira fusiformis is found in extremely high densities in tropical soda lakes acting as driving force of the food web. We studied pronounced temporal morphological changes of Arthrospira in Kenyan soda lakes, Nakuru and Bogoria, and identified underlying key factors. Cell (diameter and height) and filament (height of coil, coil diameter, and number) dimensions were measured from weekly samples collected over a period of 16 months. In both lakes, medium-sized cells and large, widely coiled filaments prevailed most. Percentage of large, widely coiled filaments was promoted by elevated levels of soluble reactive phosphorus, wind speed, temperature and conductivity and the opposite for small filaments. Large, narrow-coiled filaments were associated with an increase in mainly Arthrospira-grazing zooplankton and cyanophage infections. Widely coiled spirals were promoted by increased turbulences. Based on fluorescence measurements, we found widely coiled filaments representing high vitality. From this study we were able to demonstrate for the first time morphological patterns of Arthrospira in nature. Arthrospira morphotypes are suitable for indicating the biological status in soda lakes as they are subjective and therefore reflective of what is happening in its habitat. Additionally, this outcome might be also of interest for commercial ′Spirulina′ farms in enhancing high-quality production.
机译:在热带苏打湖中以极高的密度发现了丝状螺旋盘绕的蓝藻原核节肢动物Arthrospira fusiformis,它是食物网的驱动力。我们研究了肯尼亚苏打湖,纳库鲁和波哥大中节肢动物的明显时态形态变化,并确定了潜在的关键因素。从16个月的每周样本中测量电池(直径和高度)和细丝(线圈的高度,线圈直径和数量)尺寸。在这两个湖泊中,中型细胞和大而卷曲的细丝占主导地位。可溶性反应性磷,风速,温度和电导率的升高可提高大而卷曲的长丝的百分比,而小长丝则相反。大而窄的盘绕细丝主要与节食螺旋藻放牧浮游动物和蓝藻感染有关。湍流的增加促进了螺旋形的盘旋。根据荧光测量,我们发现了代表高生命力的广泛盘绕的长丝。从这项研究中,我们能够首次证明节肢动物在自然界中的形态模式。节肢动物的形态类型适合指示苏打湖的生物状态,因为它们是主观的,因此可以反映其栖息地的状况。此外,这种结果对于商业化的“螺旋藻”养殖场在提高高质量生产方面也可能是令人感兴趣的。

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