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Biological dinitrogen fixation by selected soil cyanobacteria as affected by strain origin, morphotype, and light conditions

机译:受菌株起源,形态和光照条件影响的选定土壤蓝细菌对生物二氮的固定作用

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摘要

The potential for N2 fixation by heterocystous cyanobacteria isolated from soils of different geographical areas was determined as nitrogenase activity (NA) using the acetylene reduction assay. Morphology of cyanobacteria had the largest influence on NA determined under light conditions. NA was generally higher in species lacking thick slime sheaths. The highest value (1446 nmol/h C2H4 per g fresh biomass) was found in the strain of branched cyanobacterium Hassalia (A Has1) from the polar region. A quadratic relationship between NA and biomass was detected in the Tolypothrix group under light conditions. The decline of NA in dark relative to light conditions ranged from 37 to 100 % and differed among strains from distinct geographical areas. Unlike the NA of temperate and tropical strains, whose decline in dark relative to light was 24 and 17 %, respectively, the NA of polar strains declined to 1 % in the dark. This difference was explained by adaptation to different light conditions in temperate, tropical, and polar habitats. NA was not related to the frequency of heterocysts in strains of the colony-forming cyanobacterium Nostoc. Colony morphology and life cycle are therefore more important for NA then heterocyst frequency. NA values probably reflect the environmental conditions where the cyanobacterium was isolated and the physiological and morphological state of the strain.
机译:用乙炔还原法测定了从不同地理区域的土壤中分离出来的异囊藻蓝细菌对N 2 的固定潜力。蓝细菌的形态对光条件下测定的NA影响最大。在缺乏浓厚的粘液鞘的物种中,NA通常较高。在极地地区的分支蓝藻哈萨利亚菌株(Hasalia)中发现了最高值(每克新鲜生物量1446 nmol / h C 2 H 4 )。在光照条件下,Tolypothrix组中NA和生物量之间存在二次关系。相对于光照条件,NA在黑暗中的下降幅度为37%至100%,并且在不同地理区域的菌株之间有所不同。与温带和热带菌株的NA分别相对于光在黑暗中下降24%和17%不同,极性菌株的NA在黑暗中下降至1%。可以通过在温带,热带和极地生境中适应不同的光照条件来解释这种差异。 NA与形成菌落的蓝细菌Nostoc菌株中的异胚囊频率无关。因此,菌落的形态和生命周期对NA而言比异胚细胞频率更为重要。 NA值可能反映了分离蓝藻的环境条件以及菌株的生理和形态状态。

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