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首页> 外文期刊>BMC Plant Biology >Photosynthesis acclimation under severely fluctuating light conditions allows faster growth of diatoms compared with dinoflagellates
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Photosynthesis acclimation under severely fluctuating light conditions allows faster growth of diatoms compared with dinoflagellates

机译:与Dinoflagelate相比,抗氨纶的光合作用型光化条件下的光合作用适应性允许硅藻更快

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Diatoms contribute 20% of the global primary production and are adaptable in dynamic environments. Diatoms always bloom earlier in the annual phytoplankton succession instead of dinoflagellates. However, how diatoms acclimate to a dynamic environment, especially under changing light conditions, remains unclear. We compared the growth and photosynthesis under fluctuating light conditions of red tide diatom Skeletonema costatum, red tide dinoflagellate Amphidinium carterae, Prorocentrum donghaiense, Karenia mikimotoi, model diatom Phaeodactylum tricornutum, Thalassiosira pseudonana and model dinoflagellate Dinophycae Symbiodinium. Diatoms grew faster and maintained a consistently higher level of photosynthesis. Diatoms were sensitive to the specific inhibitor of Proton Gradient Regulation 5 (PGR5) depending photosynthetic electron flow, which is a crucial mechanism to protect their photosynthetic apparatus under fluctuating light. In contrast, the dinoflagellates were not sensitive to this inhibitor. Therefore, we investigate how PGR5 functions under light fluctuations in the model diatom P. tricornutum by knocking down and overexpressing PGR5. Overexpression of PGR5 reduced the photosystem I acceptor side limitation (Y (NA)) and increased growth rate under severely fluctuating light in contrast to the knockdown of PGR5. Diatoms acclimatize to fluctuating light conditions better than dinoflagellates. PGR5 in diatoms can regulate their photosynthetic electron flow and accelerate their growth under severe light fluctuation, supporting fast biomass accumulation under dynamic environments in pioneer blooms.
机译:硅藻贡献了全球初级生产的20%,适应动态环境。硅藻总是在一年一度的浮游植物的继承而不是Dinoflagellates的早期绽放。然而,硅藻的适应动态环境,特别是在改变光线条件下,仍然不清楚。我们比较了红潮硅藻骨架骨架Careatum的波动和光合作用的生长和光合作用,红潮DinoflageAlateAmphidinium carterae,prorocentrum donghaiense,Karenia mikimotoi,模型Diatom Phaeodactylum Tricornutum,Thalassiosira pseudonana和Model Dinoflagellate Dinophycae symbiodinium。硅藻生长更快,保持始终如一的光合作用水平。硅藻对质子梯度调节5(PGR5)的特异性抑制剂敏感,这是光合电子流量的一种重要机制,以保护它们在波动光下的光合装置。相比之下,Dinoflagellates对该抑制剂不敏感。因此,我们研究了PGR5如何通过敲击和过表达PGR5来在模型DiAtom P. Tricornutum中的光波波动下起作用。 PGR5的过度表达降低了照相I受体侧限制(Y(NA)),与PGR5的敲低相比,在严重波动的光照下增加的生长速率增加。硅藻适应比丁曲素蛋白更好的光线状况。 PGR5在硅藻中可以调节它们的光合电子流量,并在严重的光照波动下加速其生长,在先锋绽放的动态环境下支持快速生物量积累。

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