20世纪40年代,以小球藻为资料研究不同光质的量子产额,发现大于680nm的远红光(far-red light)固然仍被叶绿素汲取,但量子产额急剧下降,这种现象被称为红降现象(red drop)。
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far red light 远红光
far-red light signaling 远红光信号
red and far-red light 红光与远红光
red and far red light 红光与远红光
There will be less red light and more far-red light than normal.
红光会比平时少,远红光会比平时多。
A ratio of less red and to more far-red light would cause a reaction from the plant.
较少红光和较多远红光的比例会引起植物的反应。
The plant on top would absorb most of the red light for photosynthesis, but reflect most of the far-red light.
顶部的植物会吸收大部分的红光进行光合作用,但反射大部分的远红光。
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