Molecular Plant Physiology Department, Utrecht University, Padualaan 8, Utrecht, 3584CH, the Netherlands.
Department of Marine Microbiology and Biogeochemistry, Netherlands Institute for Sea Research (NIOZ), Utrecht University, Den Hoorn, 1797SZ, the Netherlands.
New Phytol. 2018 Jan;217(1):453-466. doi: 10.1111/nph.14843. Epub 2017 Oct 30.
Dinitrogen fixation by Nostoc azollae residing in specialized leaf pockets supports prolific growth of the floating fern Azolla filiculoides. To evaluate contributions by further microorganisms, the A. filiculoides microbiome and nitrogen metabolism in bacteria persistently associated with Azolla ferns were characterized. A metagenomic approach was taken complemented by detection of N O released and nitrogen isotope determinations of fern biomass. Ribosomal RNA genes in sequenced DNA of natural ferns, their enriched leaf pockets and water filtrate from the surrounding ditch established that bacteria of A. filiculoides differed entirely from surrounding water and revealed species of the order Rhizobiales. Analyses of seven cultivated Azolla species confirmed persistent association with Rhizobiales. Two distinct nearly full-length Rhizobiales genomes were identified in leaf-pocket-enriched samples from ditch grown A. filiculoides. Their annotation revealed genes for denitrification but not N -fixation. N incorporation was active in ferns with N. azollae but not in ferns without. N O was not detectably released from surface-sterilized ferns with the Rhizobiales. N -fixing N. azollae, we conclude, dominated the microbiome of Azolla ferns. The persistent but less abundant heterotrophic Rhizobiales bacteria possibly contributed to lowering O levels in leaf pockets but did not release detectable amounts of the strong greenhouse gas N O.
固氮蓝藻( Nostoc azollae )生活在特化的叶囊中,为满江红的大量生长提供支持。为了评估其他微生物的贡献,我们对满江红共生微生物组及其与满江红共生的细菌的氮代谢进行了特征描述。我们采用宏基因组学方法,并结合氮氧化物的释放检测和满江红生物量的氮同位素测定。对自然满江红的 rRNA 基因、其富集的叶囊以及周围沟渠水的过滤物进行测序,结果表明满江红中的细菌与周围水完全不同,并且发现了根瘤菌目( Rhizobiales )的细菌。对 7 种培养的满江红的分析证实了与根瘤菌的持续共生关系。在从沟渠中生长的满江红叶囊中富集的样本中,鉴定出两种截然不同的近乎完整的根瘤菌目基因组。对它们的注释揭示了反硝化基因,但没有固氮基因。满江红中有 N.azollae 时氮的同化是活跃的,但没有 N.azollae 时则不然。从经过表面消毒的满江红中没有检测到可释放的氮氧化物。我们的结论是,固氮蓝藻( Nostoc azollae )主导了满江红的微生物组。持续存在但数量较少的异养根瘤菌可能有助于降低叶囊中氧气的水平,但没有释放出可检测数量的强温室气体氮氧化物。