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与单色红光相比,绿光改善了黄瓜幼苗的光系统化学计量比()

Green Light Improves Photosystem Stoichiometry in Cucumber Seedlings () Compared to Monochromatic Red Light.

作者信息

Claypool Nicholas B, Lieth J Heinrich

机构信息

Plant Sciences, University of California, Davis, CA 95616, USA.

出版信息

Plants (Basel). 2021 Apr 21;10(5):824. doi: 10.3390/plants10050824.

Abstract

It has been shown that monochromatic red and blue light influence photosynthesis and morphology in cucumber. It is less clear how green light impacts photosynthetic performance or morphology, either alone or in concert with other wavelengths. In this study, cucumber () was grown under monochromatic blue, green, and red light, dichromatic blue-green, red-blue, and red-green light, as well as light containing red, green, and blue wavelengths, with or without supplemental far-red light. Photosynthetic data collected under treatment spectra at light-limiting conditions showed that both red and green light enhance photosynthesis. However, photosynthetic data collected with a 90% red, 10% blue, 1000 µmol photons m s, saturating light show significantly lower photosynthesis in the green, red, and red-green treatments, indicating a blue light enhancement due to photosystem stoichiometric differences. The red-green and green light treatments show improved photosynthetic capacity relative to red light, indicating partial remediation by green light. Despite a lower quantum efficiency and the lowest ambient photosynthesis levels, the monochromatic blue treatment produced among the tallest, most massive plants with the greatest leaf area and thickest stems.

摘要

研究表明,单色红光和蓝光会影响黄瓜的光合作用和形态。绿光单独或与其他波长的光协同作用时如何影响光合性能或形态,目前尚不清楚。在本研究中,黄瓜在单色蓝光、绿光和红光、双色蓝绿光、红蓝光和红绿光以及包含红、绿、蓝波长的光下生长,有或没有补充远红光。在光限制条件下处理光谱下收集的光合数据表明,红光和绿光均能增强光合作用。然而,在90%红光、10%蓝光、1000 μmol光子·m⁻²·s⁻¹饱和光下收集的光合数据显示,绿光、红光和红绿光处理中的光合作用显著较低,这表明由于光合系统化学计量差异导致蓝光增强。红绿光和绿光处理相对于红光显示出光合能力有所提高,表明绿光有部分补救作用。尽管量子效率较低且环境光合作用水平最低,但单色蓝光处理产生的植株最高、最粗壮,叶面积最大且茎最粗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e28/8143185/094bc39f7bb3/plants-10-00824-g001.jpg

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