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Isolation of ‘Candidatus Nitrosocosmicus franklandus’ a novel ureolytic soil archaeal ammonia oxidiser with tolerance to high ammonia concentration

机译:分离出一种耐高氨浓度的新型尿素分解土壤古生氨氧化剂 Candidatus Nitrosocosmicus franklandus

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摘要

Studies of the distribution of ammonia oxidising archaea (AOA) and bacteria (AOB) suggest distinct ecological niches characterised by ammonia concentration and pH, arising through differences in substrate affinity and ammonia tolerance. AOA form five distinct phylogenetic clades, one of which, the ‘Nitrososphaera sister cluster’, has no cultivated isolate. A representative of this cluster, named ‘Candidatus Nitrosocosmicus franklandus’, was isolated from a pH 7.5 arable soil and we propose a new cluster name: ‘Nitrosocosmicus’. While phylogenetic analysis of amoA genes indicates its association with the Nitrososphaera sister cluster, analysis of 16S rRNA genes provided no support for a relative branching that is consistent with a ‘sister cluster’, indicating placement within a lineage of the order Nitrososphaerales. ‘Ca. N. franklandus’ is capable of ureolytic growth and its tolerances to nitrite and ammonia are higher than in other AOA and similar to those of typical soil AOB. Similarity of other growth characteristics of ‘Ca. N. franklandus’ with those of typical soil AOB isolates reduces support for niche differentiation between soil AOA and AOB and suggests that AOA have a wider physiological diversity than previously suspected. In particular, the high ammonia tolerance of ‘Ca. N. franklandus’ suggests potential contributions to nitrification in fertilised soils.
机译:对氨氧化古细菌(AOA)和细菌(AOB)分布的研究表明,由于底物亲和力和氨耐受性的差异而产生了以氨浓度和pH为特征的独特生态位。 AOA由五个不同的系统发育进化枝组成,其中的一个亚硝化菌姐妹簇没有任何分离株。从pH值为7.5的可耕土壤中分离出了该类群的代表,名为“ Candidatus Nitrosocosmicus franklandus”,我们建议使用新的类群名称:“ Nitrosocosmicus”。虽然对amoA基因的系统发育分析表明其与亚硝基球菌姐妹簇相关,但对16S rRNA基因的分析并没有为与“姐妹簇”一致的相对分支提供支持,表明其位于亚硝基球菌的谱系中。 ‘Ca。弗兰克猪笼草具有尿素分解能力,对亚硝酸盐和氨的耐受性高于其他AOA,与典型土壤AOB相似。钙的其他生长特征相似。弗兰克猪笼草与典型的土壤AOB分离株相比,减少了对土壤AOA和AOB之间的生态位分化的支持,并表明AOA的生理多样性比以前所怀疑的要广泛。特别是'Ca具有很高的氨耐受性。弗兰克兰猪笼草(N. franklandus)提出了对施肥土壤硝化的潜在贡献。

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