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首页> 外文期刊>Environmental and experimental botany >The phycobilisomes of Synechococcus sp are constructed to minimize nitrogen use in nitrogen-limited cells and to maximize energy capture in energy-limited cells
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The phycobilisomes of Synechococcus sp are constructed to minimize nitrogen use in nitrogen-limited cells and to maximize energy capture in energy-limited cells

机译:构建SneCeChocccus Sp的植物霉素以最小化在氮气有限细胞中使用的氮气,并在能量有限细胞中最大化能量捕获

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摘要

Synechococcus sp. UTEX LB2380 is a coastal strain of a cosmopolitan cyanobacterial genus. In coastal waters, N and light availability are highly variable and their interplay may influence C allocation and photosynthetic performance. In this paper, we compared the impact of nitrogen (N) limitation and energy (light, E) limitation on phycobilisome composition and photosynthesis, in the presence of either NO3- or NH4+. Our hypothesis was that the phycobilisome composition would be influenced by the factor limiting growth. Our results show that N limited cells adjusted their phycobilisome antenna to minimize N utilization, whereas E-limited cells had a phycobilisome composition tailored to alleviate E deficiency. The N-source was relevant for the pigment composition, under both limitations. When N limited growth, excess energy management may become important to decrease the risk of photoinhibition and oxidative stress; when the sink of electrons constituted by NO3- reduction was not present, the cells tended to decrease their phycobiliprotein content, possibly in order to minimize the size of PSII antennas and decrease excitation. When energy was limiting, the energy saved for N ;assimilation in NH4+ -grown cells was invested in antenna pigments to allow for a higher energy input.
机译:synechocccus sp。 Utex LB2380是一个沿海菌条的沿海菌毒性属植物。在沿海水域中,N和Illow可用性很大,它们的相互作用可能会影响C分配和光合性能。在本文中,在NO 3-或NH 4 +的存在下,我们比较了氮(n)限制和能量(光,e)限制对植物植物组合物和光合作用的影响。我们的假设是植物植物组合物的影响将受到限制生长的因子的影响。我们的结果表明,N有限的细胞调节其植物碱天线,以最小化N利用率,而E限制细胞具有量身定制以减轻缺乏症的植物胺组合物。在两个限制下,n源与颜料组合物相关。当N有限的生长时,过量的能量管理可能会降低光抑制和氧化应激的风险变得重要;当不存在由NO 3减少构成的电子水槽时,细胞倾向于降低其植物胆蛋白含量,以便最小化PSII天线的尺寸并降低激发。当能量限制时,保存的n; NH4 + -BLOWN细胞中的同化在天线颜料中投入,以允许更高的能量输入。

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