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An alternative approach to the traditional mixotrophic cultures of Haematococcus pluvialis flotow (Chlorophyceae)

机译:雨生红球藻(Chlorophyceae)的传统混合营养培养的替代方法

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In traditional mixotrophic cultures of microalgae, all the inorganic nutrients and organic carbon sources are supplied in the medium before inoculation. In this study, however, an alternative approach was adopted in Haematococcus pluvialis Flotow, a microalga capable of growing mixotrophically on sodium acetate (Na-Ac). First, the cells were grown under 75 μmol photons m~(-2) s~(-1) phototrophically without Na-Ac until the stationary phase and then exposed to five different light regimes by the addition of Na-Ac (e.g., dark, 20, 40, 75, and 150 μmol photons m~(-2) s~(-1)). Dry weight (DW), pigments, and especially cell number in alternative mixotrophy (AM) were higher than traditional mixotrophy (TM). Cell number in AM almost doubled up from 21.7 to 42.9×10~4 cells/ml during 5-day exposure to Na-Ac, whereas the increase was only 1.2-fold in TM. Maximum cell density was reached in 75 μmol photons m~(-2) s~(-1) among the light intensities tested. We propose that Na-Ac in TM of H. pluvialis can not be utilized as efficiently as in AM. With this respect, AM has several advantages against TM such as a much higher cell density in a batch culture period and minimized risk of contamination owing to the shorter exposure of cells to organic carbon sources. In consequence, this method may be used for other strains of the species, and even for the other microalgal species able to grow mixotrophically.
机译:在传统的微藻混合营养培养中,接种之前,所有无机养分和有机碳源都在培养基中提供。然而,在这项研究中,在雨生红球菌Flotow中采用了另一种方法,该微藻能够在乙酸钠(Na-Ac)上混合营养生长。首先,使细胞在无Na-Ac的75μmol光子m〜(-2)s〜(-1)下光养生长直至固定相,然后通过添加Na-Ac暴露于五种不同的光照条件下(例如,黑暗,20、40、75和150μmol光子m〜(-2)s〜(-1))。干重(DW),色素,尤其是替代混养(AM)中的细胞数高于传统混养(TM)。在Na-Ac暴露5天后,AM中的细胞数几乎从原来的21.7倍增加到42.9×10〜4细胞/ ml,而TM中的增加仅为1.2倍。在测试的光强度中,75μmol光子m〜(-2)s〜(-1)达到了最大细胞密度。我们建议,不能像在AM中那样有效地利用幽门螺杆菌TM中的Na-Ac。在这方面,AM具有对抗TM的多个优势,例如在分批培养期间具有更高的细胞密度,并且由于细胞在有机碳源中的暴露时间较短,因此污染风险最小化。因此,该方法可用于该物种的其他菌株,甚至可用于能够混合营养生长的其他微藻物种。

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