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Bacterial Life and Dinitrogen Fixation at a Gypsum Rock

机译:石膏岩石的细菌寿命和固氮作用

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The organisms of a bluish-green layer beneath the shards of a gypsum rock were characterized by molecular techniques. The cyanobacterial consortium consisted almost exclusively of Chroococcidiopsis spp. The organisms of the shards expressed nitrogenase activity (C2H2 reduction) aerobically and in light. After a prolonged period of drought at the rock, the cells were inactive, but they resumed nitrogenase activity 2 to 3 days after the addition of water. In a suspension culture of Chroococcidiopsis sp. strain PCC7203, C2H2 reduction required microaerobic conditions and was strictly dependent on low light intensities. Sequencing of a segment of the nitrogenase reductase gene (nifH) indicated that Chroococcidiopsis possesses the alternative molybdenum nitrogenase 2, expressed in Anabaena variabilis only under reduced O2 tensions, rather than the widespread, common molybdenum nitrogenase. The shards apparently provide microsites with reduced light intensities and reduced O2 tension that allow N2 fixation to proceed in the unicellular Chroococcidiopsis at the gypsum rock, unless the activity is due to minute amounts of other, very active cyanobacteria. Phylogenetic analysis of nifH sequences tends to suggest that molybdenum nitrogenase 2 is characteristic of those unicellular or filamentous, nonheterocystous cyanobacteria fixing N2 under microaerobic conditions only.
机译:通过分子技术表征了在石膏岩石的碎片下面的蓝绿色层的生物。蓝细菌财团几乎完全由嗜铬球菌组成。碎片的有机体需氧并在光线下表达了固氮酶活性(减少了C2H2)。在岩石上长期干旱后,这些细胞失去了活性,但是在加水后2至3天它们又恢复了固氮酶的活性。在嗜铬菌的悬浮培养中。菌株PCC7203还原C2H2需要微有氧条件,并且严格取决于弱光强度。固氮酶还原酶基因(nifH)片段的测序表明,球尾孢菌具有替代的钼固氮酶2,仅在降低的氧气压力下才在变色鱼腥藻中表达,而不是普遍的普通钼固氮酶。这些碎片显然为微点提供了降低的光强度和降低的O2张力,使N2固定在石膏岩的单细胞蓝藻中进行,除非该活性是由于极少量的其他非常活跃的蓝细菌引起的。 nifH序列的系统进化分析倾向于表明,钼固氮酶2仅在微需氧条件下具有固定N2的单细胞或丝状,非杂藻性蓝细菌的特征。

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