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首页> 外文期刊>Photosynthesis Research: An International Journal >Characterization of a newly isolated freshwater Eustigmatophyte alga capable of utilizing far-red light as its sole light source
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Characterization of a newly isolated freshwater Eustigmatophyte alga capable of utilizing far-red light as its sole light source

机译:一种能够利用远红光作为其唯一光源的新隔离淡水eUSTIGMatophyte藻类的特征

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Abstract Oxygenic phototrophs typically utilize visible light (400–700?nm) to drive photosynthesis. However, a large fraction of the energy in sunlight is contained in the far-red region, which encompasses light beyond 700?nm. In nature, certain niche environments contain high levels of this far-red light due to filtering by other phototrophs, and in these environments, organisms with photosynthetic antenna systems adapted to absorbing far-red light are able to thrive. We used selective far-red light conditions to isolate such organisms in environmental samples. One cultured organism, the Eustigmatophyte alga Forest Park Isolate 5 (FP5), is able to absorb far-red light using a chlorophyll (Chl) a- containing antenna complex, and is able to grow under solely far-red light. Here we characterize the antenna system from this organism, which is able to shift the absorption of Chl a to >705?nm.
机译:摘要氧气光学通常利用可见光(400-700Ω·nm)来驱动光合作用。 然而,阳光下的大部分能量包含在远红区域中,其包括超过700Ω·Nm的光。 本质上,某些利基环境含有高水平的这种远红光,由于其他光营,并且在这些环境中,具有适应吸收远红光的光合天线系统的生物能够茁壮成长。 我们使用了选择性的远红光条件来分离环境样本中的这种生物。 一种培养的生物体,Qualtigmatophyte藻类森林公园分离物5(FP5),能够使用含叶绿素(CHL)的天线复合物吸收远红光,并且能够在单根红光下生长。 在这里,我们从该生物体中表征了天线系统,其能够将CHL A的吸收移至>705≤nm。

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