首页> 外文OA文献 >CULTURE CONDITIONS AND THE DEVELOPMENT OF THE PHOTOSYNTHETIC MECHANISM : IV. INFLUENCE OF LIGHT INTENSITY ON PHOTOSYNTHETIC CHARACTERISTICS OF CHLORELLA
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CULTURE CONDITIONS AND THE DEVELOPMENT OF THE PHOTOSYNTHETIC MECHANISM : IV. INFLUENCE OF LIGHT INTENSITY ON PHOTOSYNTHETIC CHARACTERISTICS OF CHLORELLA

机译:培养条件和光合机理的发展:四。光强对叶绿素光合特性的影响

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摘要

1. Chlorella pyrenoidosa has been grown in a continuous-culture apparatus under various light intensities provided by incandescent lamps, other conditions of culture being maintained constant. Light intensity curves for cells immersed in the No. 11 Warburg buffer and in Knop's solution + 4.4 per cent CO2 at a saturating light intensity were determined as characteristics of the photosynthetic mechanism. These characteristics were referred to the centrifuged cell volume as an index of quantity of cellular material. 2. Cells grown at intensities in the range of about 35 f.-c. develop a capacity for a high rate of photosynthesis (c.mm. O2/hour/c.mm. cells). At culture intensities above or below this range the cells produced have a lower capacity for photosynthesis. A similar effect is observed for rate of photosynthesis per unit dry weight or rate per unit cell nitrogen. 3. The rate of photosynthesis per cell or rate per unit chlorophyll shows no maximum at any light intensity of culture but increases continuously throughout the range of light intensities studied. 4. Maximum rate of growth is attained at a light intensity of about 100 f.-c. The hypothesis is advanced that at culture intensities above that needed to give maximum rate of growth (100 f.-c.) a mechanism is developed which opposes the photosynthetic process and removes the photosynthetic products. 5. The low capacity for photosynthesis shown by cells grown at culture intensities below 35 f.-c. finds no immediate explanation. 6. The shape of the light intensity curve is markedly affected by the light intensity at which the cells have been cultured. Cells grown at lower intensities give light intensity curves approaching the Blackman type with a short transitional region between light limitation and light saturation.
机译:1.小球藻在连续培养装置中在白炽灯提供的各种光强度下生长,其他培养条件保持恒定。确定了浸入11号Warburg缓冲液和Knop溶液+ 4.4%CO2(饱和光强度)的细胞的光强度曲线,作为光合作用机制的特征。这些特性称为离心细胞体积,作为细胞材料量的指标。 2.以约35f.-c范围内的强度生长的细胞。开发出高光合作用能力(C.mm. O2 /小时/c.mm。细胞)。在高于或低于此范围的培养强度下,产生的细胞具有较低的光合作用能力。对于每单位干重的光合作用速率或每单位细胞氮的速率观察到类似的效果。 3.在任何培养光强度下,每个细胞的光合作用速率或每单位叶绿素的速率均未显示最大值,但在所研究的整个光照强度范围内均不断增加。 4.在约100f.-c的光强度下获得最大的生长速率。提出了这样的假设:在高于最大生长速率(100 f.-c.)所需的培养强度时,建立了一种机制,该机制与光合作用过程相反,并除去了光合作用产物。 5.在低于35f.c的培养强度下生长的细胞显示出低的光合作用能力。找不到立即的解释。 6.光强度曲线的形状明显受培养细胞的光强度的影响。以较低强度生长的细胞会给出接近Blackman类型的光强度曲线,并在光限制和光饱和之间有一个短的过渡区域。

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  • 作者

    Myers, Jack;

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  • 年度 1946
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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