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利用单色红光和蓝光组合促进泡叶藻生长的动力学研究。

Enhancing the growth of Physcomitrella patens by combination of monochromatic red and blue light - a kinetic study.

机构信息

Institute of Life Science Engineering, Division of Bioprocess Engineering, Karlsruhe Institute of Technology, Germany.

出版信息

Biotechnol J. 2012 Apr;7(4):527-36. doi: 10.1002/biot.201100044. Epub 2011 Jul 22.

Abstract

In the current work we demonstrate the relevance of monochromatic light conditions in moss plant cell culture. Light intensity and illumination wavelength are important cultivation parameters due to their impact on growth and chlorophyll formation kinetics of the moss Physcomitrella patens. This moss was chosen as a model organism due to its capability to produce complex recombinant pharmaceutical proteins. Filamentous moss cells were cultivated in mineral medium in shaking flasks. The flasks were illuminated by light emitting diodes (LED) providing nearly monochromatic red and blue light as well as white light as a reference. A maximum growth rate of 0.78 day((1) was achieved under additional CO(2) aeration and no growth inhibition was observed under high light illumination. The application of dual red and blue light is the most effective way to reach high growth and chlorophyll formation rates while minimizing energy consumption of the LEDs. These observations are discussed as effects of photo sensory pigments in the moss. The combination of monochromatic red and blue light should be considered when a large scale process is set up.

摘要

在当前的工作中,我们证明了单色光照条件在苔藓植物细胞培养中的相关性。光强度和光照波长是重要的培养参数,因为它们会影响到苔藓植物拟南芥的生长和叶绿素形成动力学。之所以选择这种苔藓作为模式生物,是因为它有能力产生复杂的重组药物蛋白。丝状苔藓细胞在摇瓶中的矿物培养基中培养。培养瓶通过发光二极管(LED)照明,提供近乎单色的红光和蓝光以及白光作为参考。在额外的 CO(2)通气下,可实现最大生长速率为 0.78 天((1),在高光照射下未观察到生长抑制。应用双红和蓝光是达到高生长和叶绿素形成速率的最有效方法,同时最小化 LED 的能量消耗。这些观察结果被认为是苔藓中光感觉色素的影响。当建立大规模工艺时,应考虑使用单色红光和蓝光的组合。

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