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Action Spectra for Nitrate and Nitrite Assimilation in Blue-Green Algae 1

机译:蓝绿藻1中硝酸盐和亚硝酸盐同化的作用谱

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摘要

Action spectra for the assimilation of nitrate and nitrite have been obtained for several blue-green algae (cyanobacteria) with different accessory pigment composition. The action spectra for both nitrate and nitrite utilization by nitrate-grown Anacystis nidulans L-1402-1 cells exhibited a clear peak at about 620 nanometers, corresponding to photosystem II (PSII) C-phycocyanin absorption, the contribution of chlorophyll a (Chl a) being barely detectable. The action spectrum for nitrate reduction by a nitrite reductase mutant of A. nidulans R2 was very similar. All these action spectra resemble the fluorescence excitation spectrum of cell suspensions of the microalgae monitored at 685 nanometers—the fluorescence band of Chl a in PSII. In contrast, the action spectrum for nitrite utilization by nitrogen-starved A. nidulans cells, which are depleted of C-phycocyanin, showed a maximum near 680 nanometers, attributable to Chl a absorption. The action spectrum for nitrite utilization by Calothrix sp. PCC 7601 cells, which contain both C-phycoerythrin and C-phycocyanin as PSII accessory pigments, presented a plateau in the region from 550 to 630 nanometers. In this case, there was also a clear parallelism between the action spectrum and the fluorescence excitation spectrum, which showed two overlapped peaks with maxima at 562 and 633 nanometers. The correlation observed between the action spectra for both nitrate and nitrite assimilation and the light-harvesting pigment content of the blue-green algae studied strongly suggests that phycobiliproteins perform a direct and active role in these photosynthetic processes.
机译:对于几种具有不同辅助颜料组成的蓝藻(蓝藻),已经获得了硝酸盐和亚硝酸盐同化的作用谱。硝酸盐生长的Anacystis nidulans L-1402-1细胞利用硝酸盐和亚硝酸盐的作用谱在大约620纳米处显示出一个清晰的峰,对应于光系统II(PSII)C-藻蓝蛋白的吸收,即叶绿素a(Chl a )几乎无法检测到。 nidulans R2的亚硝酸还原酶突变体对硝酸盐还原的作用谱非常相似。所有这些作用谱类似于在685纳米处监测的微藻细胞悬液的荧光激发光谱,即PSII中Chla的荧光带。相反,缺乏C-藻蓝蛋白的氮饥饿的构巢曲霉细胞利用亚硝酸盐的作用谱显示最大接近680纳米,这归因于Chla的吸收。 Calothrix sp。利用亚硝酸盐的作用谱。包含C-藻红蛋白和C-藻蓝蛋白作为PSII辅助颜料的PCC 7601细胞在550到630纳米区域呈现平稳状态。在这种情况下,作用谱和荧光激发谱之间也存在明显的平行性,显示出两个重叠的峰,最大峰分别在562和633纳米。在硝酸盐和亚硝酸盐同化作用的作用谱与所研究的蓝绿色藻类的光捕获色素含量之间观察到的相关性强烈表明,藻胆蛋白在这些光合作用过程中起着直接和积极的作用。

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