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首页> 外文期刊>Plant and Soil >Biological Nitrogen Fixation is not a Major Contributor to the Nitrogen Demand of a Commercially Grown South African Sugarcane Cultivar
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Biological Nitrogen Fixation is not a Major Contributor to the Nitrogen Demand of a Commercially Grown South African Sugarcane Cultivar

机译:生物固氮不是商业上种植的南非甘蔗品种对氮需求的主要贡献者

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摘要

It has previously been reported that endophytic diazotrophic bacteria contribute significantly to the nitrogen budgets of some graminaceous species. In this study the contribution of biological nitrogen fixation to the N-budget of a South African sugarcane cultivar was evaluated using 15N natural abundance, acetylene reduction and 15N incorporation. Plants were also screened for the presence of endophytic diazotrophic bacteria using acetylene reduction and nifH-gene targeted PCR with the pure bacterial strains. 15N natural abundance studies on field-grown sugarcane indicated that the plants did not rely extensively on biological nitrogen fixation. Furthermore, no evidence was found for significant N2-fixation or nitrogenase activity in field-grown or glasshouse-grown plants using 15N incorporation measurements and acetylene reduction assays. Seven endophytic bacterial strains were isolated from glasshouse-grown and field-grown plants and cultured on N-free medium. The diazotrophic character of these seven strains could not be confirmed using acetylene reduction and PCR screening for nifH. Thus, although biological nitrogen fixation may occur in South African sugarcane varieties, the contribution of this N-source in the tested cultivar was not significant.
机译:以前有报道说,内生重氮细菌对某些禾本科物种的氮预算有很大贡献。在这项研究中,使用15 N的自然丰度,乙炔的还原和15 N的掺入来评估生物固氮对南非甘蔗品种N预算的贡献。还使用乙炔还原和纯细菌菌株的nifH基因靶向PCR筛选了植物是否存在内生重氮营养细菌。 15 N对田间种植的甘蔗的自然丰度研究表明,这些植物并不广泛依赖生物固氮。此外,使用15 N掺入量测定和乙炔还原测定法,未发现在田间或温室植物中明显的N2固定或固氮酶活性的证据。从温室和田间种植的植物中分离出七个内生细菌菌株,并在无氮培养基上进行培养。使用乙炔还原和nifH的PCR筛选无法确认这七个菌株的重氮营养性。因此,尽管在南非甘蔗品种中可能发生生物固氮作用,但这种氮源在被测品种中的贡献并不显着。

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