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首页> 外文期刊>Journal of Applied Phycology >Photosynthetic acclimation to different light levels in the brown marine macroalga, Hizikia fusiformis (Sargassaceae, Phaeophyta)
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Photosynthetic acclimation to different light levels in the brown marine macroalga, Hizikia fusiformis (Sargassaceae, Phaeophyta)

机译:棕色海洋大型藻(Hizikia fusiformis)(Sargassaceae,Phaeophyta)对不同光照水平的光合适应

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Hizikia fusiformis thalli experience dynamic incident light conditions during the period of growth. The present study was designed to examine how changing photon irradiance affects the photosynthesis both in the short and long terms by culturing H. fusiformis under three different light levels: 35 μmol photons m-2 s-1 (low light, LL), 85 μmol photons m-2 s-1 (intermediate light, IL), and 165 μmol photons m-2 s-1 (high light, HL). A similar relative growth rate was observed between IL- and HL-grown algae, but the growth rate was significantly reduced in LL-grown algae. The photosynthetic rates (P n) measured at their respective growth light levels were found to be lowest in the thalli grown at LL and highest at HL. However, LL-grown algae exhibited much higher P n in comparison with IL- and the HL-grown thalli at the same measuring photosynthetic photon flux density, indicating the photosynthetic acclimation to low growth light in H. fusiformis. The photosynthesis–light curves showed that LL-grown algae had a highest light-saturating maximum P n (P max) in comparison with IL- or HL-grown algae when the photosynthetic rates were expressed on the biomass basis. However, P max was highest in HL-grown algae compared to IL- or LL-grown algae when the rates were normalized to chlorophyll a. The photosynthesis–inorganic carbon (Ci) response curves were also significantly affected by the growth light conditions. The highest value of apparent photosynthetic conductance occurred in LL-grown algae while the lowest value in HL-grown algae. Additionally, the activity of external carbonic anhydrase (CA) tended to increase while the total CA activity inclined to decrease in H. fusiformis thalli when the growth light level altered from 35 to 165 μmol photons per square meter per second. The external CA inhibitors showed a higher inhibition in HL-grown algae compared with LL-grown algae. It was proposed that photosynthetic acclimation to low light condition in H. fusiformis was achieved through an increase in the number of reaction centers and increased capacities of electron transport and of Ci transport within cells. The ability of photosynthetic acclimation to low light confers H. fusiformis thalli to overcome the environmental low light condition as a result of the attenuation of seawater or self-shading through enhancing its photosynthetic performance and carbon assimilation necessary for growth.
机译:Hizikia fusiformis thalli在生长期经历动态入射光条件。本研究旨在通过在三种不同的光照水平下培养梭形芽孢杆菌来研究短时和长时变化的光子辐照度如何短期和长期地影响光合作用:35μmol光子m -2 s - 1 (弱光,LL),85μmol光子m -2 s -1 (中间光,IL)和165μmol光子m -2 s -1 (强光,HL)。 IL和HL生长的藻类之间观察到相似的相对生长速率,但LL生长的藻类的生长速率显着降低。发现在各自生长光水平下测得的光合速率(P n )在LL生长的thalli中最低,而HL则最高。然而,在相同的光合作用光子通量密度测量下,与IL-和HL-生长的藻类相比,LL-生长的藻类显示出更高的P n 。这表明F.fusiformis对低生长光的光合适应。 。光合作用-光曲线表明,与IL或HL生长的藻类相比,LL生长的藻类具有最高的光饱和最大P n (P max )。光合速率以生物量为基础表示。然而,当将速率按叶绿素a标准化时,HL生长的藻类中的P max 最高,而IL生长或LL藻类中的P max 高。光合作用-无机碳(Ci)响应曲线也受到生长光条件的显着影响。表观光合作用的最高值出现在LL生长的藻类中,而最低值出现在HL生长的藻类中。此外,当生长光水平从每平方米每秒35到165μmol光子改变时,梭状芽胞杆菌的外部碳酸酐酶(CA)活性倾向于增加,而总CA活性倾向于降低。与LL生长藻相比,外部CA抑制剂对HL生长藻具有更高的抑制作用。有人提出,通过增加反应中心的数量和增加细胞内电子传递和Ci传递的能力,可以使梭状芽胞杆菌在弱光条件下进行光合适应。通过增强海水的光合性能和生长所需的碳同化作用,海水减弱或自遮荫使光合适应弱光的能力赋予了梭状芽胞杆菌克服环境弱光条件的能力。

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