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Levels of Daily Light Doses Under Changed Day-Night Cycles Regulate Temporal Segregation of Photosynthesis and N2 Fixation in the Cyanobacterium Trichodesmium erythraeum IMS101

机译:昼夜周期变化下的每日光剂量水平调节了红球藻Trichodesmium erythraeum IMS101中光合作用的时间分离和N2固定。

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摘要

While the diazotrophic cyanobacterium Trichodesmium is known to display inverse diurnal performances of photosynthesis and N2 fixation, such a phenomenon has not been well documented under different day-night (L-D) cycles and different levels of light dose exposed to the cells. Here, we show differences in growth, N2 fixation and photosynthetic carbon fixation as well as photochemical performances of Trichodesmium IMS101 grown under 12L:12D, 8L:16D and 16L:8D L-D cycles at 70 μmol photons m-2 s-1 PAR (LL) and 350 μmol photons m-2 s-1 PAR (HL). The specific growth rate was the highest under LL and the lowest under HL under 16L:8D, and it increased under LL and decreased under HL with increased levels of daytime light doses exposed under the different light regimes, respectively. N2 fixation and photosynthetic carbon fixation were affected differentially by changes in the day-night regimes, with the former increasing directly under LL with increased daytime light doses and decreased under HL over growth-saturating light levels. Temporal segregation of N2 fixation from photosynthetic carbon fixation was evidenced under all day-night regimes, showing a time lag between the peak in N2 fixation and dip in carbon fixation. Elongation of light period led to higher N2 fixation rate under LL than under HL, while shortening the light exposure to 8 h delayed the N2 fixation peaking time (at the end of light period) and extended it to night period. Photosynthetic carbon fixation rates and transfer of light photons were always higher under HL than LL, regardless of the day-night cycles. Conclusively, diel performance of N2 fixation possesses functional plasticity, which was regulated by levels of light energy supplies either via changing light levels or length of light exposure.
机译:虽然已知重氮营养性蓝细菌Trichodesmium表现出光合作用和N2固定的反日变化,但在不同的昼夜(L-D)周期和暴露于细胞的光剂量不同的情况下,这种现象尚未得到充分证明。在这里,我们显示了在70μmol光子m -2 s -1 PAR(LL)和350μmol光子m -2 s -1 PAR(HL)。在16L:8D下,LL的比增长率最高,而在HL下的比增长率最低;在LL下,随着在不同光照条件下暴露的日光剂量水平的升高,HL下的比增长率分别降低。 N2固定和光合碳固定受昼夜变化的影响不同,前者在LL下直接增加,白天光剂量增加,而HL在饱和增长的光照水平下下降。在所有昼夜情况下,N2固定物与光合碳固定物在时间上是分开的,这表明N2固定物的峰值与碳素固定物的下降之间存在时间差。光照时间的延长导致LL下的N2固定率高于HL下,而将光暴露缩短至8 h则延迟了N2固定峰化时间(在光照期结束时),并将其延长至夜间。不论昼夜周期如何,HL下的光合碳固定率和光子的转移始终高于LL。最终,N2固定的diel性能具有功能可塑性,该可塑性通过变化的光强度或曝光时间受到光能供应水平的调节。

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  • 期刊名称 other
  • 作者

    Xiaoni Cai; Kunshan Gao;

  • 作者单位
  • 年(卷),期 -1(10),8
  • 年度 -1
  • 页码 e0135401
  • 总页数 16
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