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首页> 外文期刊>Journal of Applied Phycology >Effects of light quality and temperature on the photosynthesis and pigment content of a subtidal edible red alga Meristotheca papulosa (Solieriaceae, Gigartinales) from Japan
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Effects of light quality and temperature on the photosynthesis and pigment content of a subtidal edible red alga Meristotheca papulosa (Solieriaceae, Gigartinales) from Japan

机译:光电质量和温度对日本的阴影可食用红藻蛋白酶(Soliaceae,Gigartinales)的光合作用和颜料含量的影响

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This study investigated the effects of different light spectral qualities and temperature on the photosynthesis and pigment content of a subtidal edible red alga, Meristotheca papulosa. Photosynthesis-irradiance (P-E) experiments were carried out under red (660 nm), blue (450 nm), green (525 nm, light-emitting diodes), and white light (visible light, metal halide lamp), and at 12, 20, and 28 degrees C, respectively. Maximum net photosynthetic rates (NPmax) were highest under green light. Other P-E parameter estimates were similar among algae under red, blue, and green light, including their lower initial slope (alpha) and higher saturation irradiances (E-k) as compared to those under white light. Additionally, NPmax and E-k under white light were highest at 28 degrees C, and lowest at 12 degrees C with characteristic photoinhibition at irradiances greater than 150 mu mol photons m(-2) s(-1). Photosynthesis-temperature (P-T) experiment revealed that the maximum gross photosynthetic rate (GP(max)) occurred at 22.1 degrees C, which was within the optimal temperature range of F-v/F-m (21.5-23.6 degrees C). Exposures to the different light qualities at 100 mu mol photons m(-2) s(-1) for 7 days showed increased phycoerythrin (PE) concentration of algae under blue and green light, while chlorophyll-a and phycocyanin (PC) showed little variation in all light qualities. Therefore, considering future management prospects for M. papulosa mariculture, we suggest that green light could be utilized to enhance photosynthesis. Furthermore, if the aim is to achieve high PE content for an improved reddish-color fresh product, exposure to blue or green light could be a good alternative.
机译:本研究研究了不同光谱素质和温度对阴性可食用红藻,梅塞罗斯科骨髓的光合作用和颜料含量的影响。光合作用 - 辐照度(PE)实验在红色(660nm),蓝色(450nm),绿色(525nm,发光二极管)和白光(可见光,金属卤化物灯)下进行,以及12,分别为20和28℃。最大净光合速率(NPMAX)在绿灯下最高。与白光下的相比,在红色,蓝色和绿光下的其他P-E参数估计在红色,蓝色和绿灯下,包括其初始斜坡(α)和更高的饱和辐射(E-K)。另外,在白光下的NPmax和E-k在28℃下最高,并且在12摄氏度下最低,具有大于150μmol光子M(-1)的Intradiances的特征光抑制。光合作用 - 温度(P-T)实验表明,22.1摄氏度发生的最大粗略光合速率(GP(MAX)),其在F-V / F-M(21.5-23.6℃)的最佳温度范围内。暴露于100μmol光子M(-2)s(-1)的不同光质素7天显示出蓝色和绿光下的藻类(PE)浓度增加,而叶绿素-A和植物素(PC)显示出很小所有轻质质量的变化。因此,考虑到未来的M. mapulosa海水养殖的管理前景,我们建议使用绿光来增强光合作用。此外,如果目的是为了实现改进的红细新鲜产品的高PE含量,则暴露于蓝色或绿光可能是一个很好的替代方案。

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