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An array microhabitat device with dual gradients revealed synergistic roles of nitrogen and phosphorous in the growth of microalgae

机译:具有双重梯度的阵列微藏宝器装置揭示了微藻生长中的氮和磷的协同作用

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Harmful algal blooms (HABs) are an emerging environmental problem contaminating water resources and disrupting the balance of the ecosystems. HABs are caused by the sudden growth of photosynthetic algal cells in both fresh and marine water, and have been expanding in extent and appearing more frequently due to the climate change and population growth. Despite the urgency of the problem, the exact environmental conditions that trigger HABs are unknown. This is in part due to the lack of high throughput tools for screening environmental parameters in promoting the growth of photosynthetic microorganisms. In this article, we developed an array microhabitat device with well defined dual nutrient gradients suitable for quantitative studies of multiple environmental parameters in microalgal cell growth. This device enabled an ability to provide 64 different nutrient conditions [nitrogen (N), phosphorous (P), and N : P ratio] at the same time, and the gradient generation took less than 90 min, advancing the current pond and test tube assays in terms of time and cost. Using a photosynthetic algal cell line, Chlamydomonas reinhardtii, preconditioned in co-limited media, we revealed that N and P synergistically promoted cell growth. Interestingly, no discernible response was observed when single P or N gradient was imposed. Our work demonstrated the enabling capability of the microfluidic platform for screening effects of multiple environmental factors in photosynthetic cell growth, and highlighted the importance of the synergistic roles of environmental factors in algal cell growth.
机译:有害的藻类绽放(HABS)是一种污染水资源的新兴环境问题,扰乱生态系统的平衡。 HABS是由新鲜和海水中的光合藻类细胞突然生长引起的,并且由于气候变化和人口增长,在范围内扩大并更频繁地出现。尽管存在的紧急情况,但触发HABS的确切环境条件是未知的。这部分是由于缺乏高吞吐工具来筛选促进光合微生物的生长方面的环境参数。在本文中,我们开发了一种阵列微藏宝器件,具有良好定义的双营养梯度,适用于微藻细胞生长中多种环境参数的定量研究。该装置能够同时提供64种不同的营养条件[氮气(N),磷(N),磷(P)和N:P比率],梯度产生花费小于90分钟,推进当前池塘和试管在时间和成本方面测定。使用光合藻类细胞系,在共同限制培养基中预处理的Chlamydomonas Reinhardtii,我们透露了N和P协同促进的细胞生长。有趣的是,当施加单个P或N梯度时,没有观察到可辨别的响应。我们的工作证明了微流体平台的能力,用于筛选光合细胞生长中的多种环境因素的影响,并强调了环境因素在藻类细胞生长中协同作用的重要性。

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