Englund Birgitta
Institute of Physiological Botany, University of Uppsala, Box 540, S-751 21, Uppsala, Sweden.
Oecologia. 1978 Jan;34(1):45-55. doi: 10.1007/BF00346240.
Nitrogen fixation (CH reduction) by blue-green algae occurring on the juvenile lava field of Heimaey, Iceland was examined both in the laboratory (potential at 20° C and 39° C) and in the field, three and a half years after the volcanic eruption.Already at this early stage of colonization representatives of unicellular and filamentous heterocystous and non-heterocystous blue-green algae were commonly observed. The predominating algae were Nostoc sp. (20° C) and Schizothrix sp. - Microcoleus chthonoplastes, (39° C), the former often in association with the protonemata-rhizoids of moss plants.The potential for nitrogen fixation was recorded at an average rate of 109.2 (20° C) and 138.1 (39° C) ng N g h in soil collected from localities randomly distributed over the lava field.Tests for nitrogen fixation performed in situ revealed significant fixation activities in all the eleven localities subject to examination. The activities ranged from 2.8 to 63.4 (mean 21.5) ng N g h and 1.9 to 17.7 (mean 7.9) ng N cm h.All the nitrogen fixation data noted imply that blue-green algae contribute a substantial part of the nitrogen input to the lava. Further, it was found that material incubated under micro-aerophilic conditions exhibited considerably enhanced nitrogenase activity.The role of nitrogen-fixing blue-green algae in general and Nostoc muscorum in particular in being suitable as pioneering organisms preparing the bare lava for ingress of other plants is also discussed.
对冰岛赫马岛幼年熔岩场上蓝藻的固氮作用(CH还原)进行了研究,研究在实验室(20℃和39℃下的潜力)和野外进行,时间为火山喷发三年半后。在这个早期定居阶段,已经普遍观察到单细胞、丝状有异形胞和无异形胞蓝藻的代表。占主导地位的藻类是念珠藻属(20℃)和裂须藻属 - 厚壁微鞘藻(39℃),前者常与苔藓植物的原丝体 - 假根相关联。从熔岩场上随机分布的地点采集的土壤中,固氮潜力记录为平均速率109.2(20℃)和138.1(39℃)纳克氮/克/小时。在现场进行的固氮测试显示,所有接受检查的11个地点都有显著的固氮活性。活性范围为2.8至63.4(平均21.5)纳克氮/克/小时和1.9至17.7(平均7.9)纳克氮/平方厘米/小时。所有记录的固氮数据表明,蓝藻对熔岩的氮输入贡献了很大一部分。此外,还发现微需氧条件下培养的物质表现出显著增强的固氮酶活性。还讨论了固氮蓝藻,特别是地衣念珠藻作为先锋生物为其他植物进入裸露熔岩做准备的一般作用。