首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Nitrogen Fixation Associated with the New Zealand Mangrove (Avicennia marina (Forsk.) Vierh. var. resinifera (Forst. f.) Bakh.)
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Nitrogen Fixation Associated with the New Zealand Mangrove (Avicennia marina (Forsk.) Vierh. var. resinifera (Forst. f.) Bakh.)

机译:与新西兰红树林(Avicennia marina(Forsk。)Vierh。var。resinifera(Forst。f。)Bakh。)相关的固氮作用

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摘要

Nitrogenase activity in mangrove forests at two locations in the North Island, New Zealand, was measured by acetylene reduction and 15N2 uptake. Nitrogenase activity (C2H2 reduction) in surface sediments 0 to 10 mm deep was highly correlated (r = 0.91, n = 17) with the dry weight of decomposing particulate organic matter in the sediment and was independent of light. The activity was not correlated with the dry weight of roots in the top 10 mm of sediment (r = −0.01, n = 13). Seasonal and sample variation in acetylene reduction rates ranged from 0.4 to 50.0 μmol of C2H4 m−2 h−1 under air, and acetylene reduction was depressed in anaerobic atmospheres. Nitrogen fixation rates of decomposing leaves from the surface measured by 15N2 uptake ranged from 5.1 to 7.8 nmol of N2 g (dry weight)−1 h−1, and the mean molar ratio of acetylene reduced to nitrogen fixed was 4.5:1. Anaerobic conditions depressed the nitrogenase activity in decomposing leaves, which was independent of light. Nitrogenase activity was also found to be associated with pneumatophores. This activity was light dependent and was probably attributable to one or more species of Calothrix present as an epiphyte. Rates of activity were generally between 100 and 500 nmol of C2H4 pneumatophore−1 h−1 in summer, but values up to 1,500 nmol of C2H4 pneumatophore−1 h−1 were obtained.
机译:通过减少乙炔和摄取 15 N2来测量新西兰北岛两个地点的红树林的氮酶活性。深度为0至10 mm的表层沉积物中的氮酶活性(减少C2H2)与分解沉积物中颗粒有机物的干重高度相关(r = 0.91,n = 17),并且与光无关。活性与沉积物顶部10 mm根部的干重无关(r = -0.01,n = 13)。空气中乙炔还原速率的季节性变化和样品变化范围为0.4至50.0μmolC2H4 m -2 h -1 ,并且在厌氧气氛中降低了乙炔的还原速度。通过 15 N2吸收测量的从表面分解叶片的固氮率范围为N2 g(干重) -1 h -1 的5.1至7.8nmol。乙炔与固定氮的平均摩尔比为4.5:1。厌氧条件降低了分解叶片中的固氮酶活性,这与光无关。还发现了固氮酶活性与肺气肿有关。该活性是光依赖性的,并且可能归因于作为附生植物存在的一种或多种Calothrix。夏季的活性速率通常在100至500 nmol的C2H4气生菌素 -1 h -1 ,但值最高为1,500 nmol的C2H4气生菌素 -1 < / sup> h -1

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