首页> 外文期刊>Journal of Applied Phycology >Growth responses and photosynthetic characteristics of wild and phycoerythrin-deficient strains of Hypnea musciformis (Rhodophyta).
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Growth responses and photosynthetic characteristics of wild and phycoerythrin-deficient strains of Hypnea musciformis (Rhodophyta).

机译:野生和藻红蛋白缺乏型呼吸不足(Hypernea musciformis)(红假单胞菌)的生长响应和光合特性。

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摘要

The phycoerythrin-deficient strain (green phenotype) of Hypnea musciformis (Rhodophyta) originated from a green branch, which had arisen as a spontaneous mutation in a wild plant (brown phenotype) collected from the Brazilian coast. The present study describes the growth responses to irradiance, photoperiod and temperature variations, pigment contents, and photosynthetic characteristics of the brown and green strains of H. musciformis. The results showed that growth rates increased as a function of irradiance (up to 40 micro mol photons m-2 s-1) but, with further increase in irradiance (from 40 to 120 micro mol photons m-2 s-1), became light-saturated and remained almost unchanged. The highest growth rates of the brown and green strains were observed in temperatures of 20-25 degrees C under long (14:10 h LD) and short (10:14 h LD) photoperiods. The brown strain had higher growth rates than the green strain in the short photoperiod, which could be related to the high concentrations of phycobiliproteins. Phycoerythrin was not detected in the green strain. The brown strain had higher concentrations of allophycocyanin and phycoerythrin in the short photoperiod while the green strain had higher concentrations of phycocyanin. The brown strain presented higher photosynthetic efficiency ( alpha ), and lower saturation parameter (Ik) and compensation irradiance (Ic) than the green strain. The brown strain exhibited the characteristics of shade-adapted plants, and its higher value of photosynthetic efficiency could be attributed to the higher phycoerythrin concentrations. Results of the present study indicate that both colour strains of H. musciformis could be selected for aquaculture, since growth rates were similar (although in different optimal light conditions), as the green strain seems to be adapted to higher light levels than the brown strain. Furthermore, these colour strains could be a useful experimental system to understand the regulation of biochemical processes of photosynthesis and metabolism of light-harvesting pigments in red algae.
机译:缺乏呼吸道的藻红蛋白菌株(绿色表型)来源于绿色分支,该分支是从巴西海岸采集的野生植物(棕色表型)中的一种自发突变。本研究描述了辐照度,光周期和温度变化,色素含量以及H. musciformis棕色和绿色菌株的光合特性对生长的响应。结果表明,生长速率随着辐照度的增加而增加(最多40 micro mol光子m-2 s-1),但是随着辐照度的进一步增加(从40 micro mol光子m-2 s-1变为120)光饱和,几乎保持不变。在长(LD:14:10 h)和短(LD:10:14 h)光周期下,在20-25摄氏度的温度下观察到棕色和绿色菌株的最高生长速率。在短的光周期中,棕色菌株的生长速率高于绿色菌株,这可能与高浓度的藻胆蛋白有关。在绿色菌株中未检出藻红蛋白。棕色菌株在短的光周期中具有较高的别藻蓝蛋白和藻红蛋白浓度,而绿色菌株具有较高的藻蓝蛋白浓度。与绿色菌株相比,棕色菌株具有更高的光合作用效率(α),较低的饱和度参数(Ik)和补偿辐照度(Ic)。棕色菌株表现出适应阴凉的植物的特性,其较高的光合效率值可归因于较高的藻红蛋白浓度。本研究的结果表明,由于生长速率相近(尽管在不同的最佳光照条件下),因此绿色和绿色的菌株比棕色的菌株更适合适应较高的光照水平,因此可以选择两种颜色的H. musciformis菌株进行水产养殖。 。此外,这些颜色菌株可能是一个有用的实验系统,以了解红藻中光合作用和光捕获色素代谢的生化过程的调控。

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