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Nitrogen Fixation Associated with Rinsed Roots and Rhizomes of the Eelgrass Zostera marina1

机译:鳗草带状疱疹的根和根状茎的固氮作用

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摘要

Nitrogen fixation was associated with the rinsed roots and rhizomes of the seagrass, Zostera marina L. Nitrogenase activity (acetylene reduction) was greater on rhizomes compared to roots, and on older roots and rhizomes relative to younger tissue. Compared to aerobic assays, anaerobic or microaerobic conditions enhanced the rate of acetylene reduction by rhizomes with attached roots, with the highest activity (100 nanomoles per gram dry weight per hour) occurring at pO2 = 0.01 atmosphere. Addition of glucose, sucrose, or succinate also increased the rate of acetylene reduction under anaerobic conditions, with glucose providing the most stimulation. In one experiment, comparison of acetylene reduction assays with 15N2 incorporation yielded a ratio of about 2.6:1. Seagrass communities are thought to be limited by the availability of nitrogen and, therefore, nitrogenase activity directly associated with their roots and rhizomes suggests the possibility of a N2-fixing flora which may subsidize their nutritional demand for nitrogen.
机译:氮固定与海草的根部和根茎的漂洗根和根茎有关。根茎中的氮素酶活性(乙炔减少)比根部要大,而老根和根茎上的氮酶活性要比年轻组织高。与需氧测定相比,厌氧或微需氧条件提高了根茎附根的乙炔的还原速率,在pO2 = 0.01大气下具有最高的活性(每小时100纳摩尔/克干重)。在厌氧条件下添加葡萄糖,蔗糖或琥珀酸酯也可提高乙炔的还原速率,其中葡萄糖提供的刺激最多。在一个实验中,比较乙炔还原试验与掺入15N2时的比率约为2.6:1。人们认为海草群落受到氮素供应的限制,因此,与它们的根和根茎直接相关的固氮酶活性提示可能存在固氮菌群,这可能会补贴其对氮的营养需求。

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