首页> 美国卫生研究院文献>Microbes and Environments >Isolation of Inositol Hexaphosphate (IHP)-Degrading Bacteria from Arbuscular Mycorrhizal Fungal Hyphal Compartments Using a Modified Baiting Method Involving Alginate Beads Containing IHP
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Isolation of Inositol Hexaphosphate (IHP)-Degrading Bacteria from Arbuscular Mycorrhizal Fungal Hyphal Compartments Using a Modified Baiting Method Involving Alginate Beads Containing IHP

机译:使用包含IHP的藻酸盐微珠的改良诱饵方法从丛枝菌根真菌菌丝隔室中分离降解肌醇六磷酸(IHP)的细菌

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摘要

Phytate (inositol hexaphosphate; IHP)-degrading microbes have been suggested to contribute to arbuscular mycorrhizal fungi (AMF)-mediated P transfer from IHP to plants; however, no IHP degrader involved in AMF-mediated P transfer has been isolated to date. We herein report the isolation of IHP-degrading bacteria using a modified baiting method. We applied alginate beads as carriers of IHP powder, and used them as recoverable IHP in the AM fungal compartment of plant cultivation experiments. P transfer from IHP in alginate beads via AMF was confirmed, and extracted DNA from alginate beads was analyzed by denaturing gradient gel electrophoresis targeting the 16S rRNA gene and a clone library method for the beta-propeller phytase (BPP) gene. The diversities of the 16S rRNA and BPP genes of microbes growing on IHP beads were simple and those of Sphingomonas spp. and Caulobacter spp. dominated. A total of 187 IHP-utilizing bacteria were isolated and identified, and they were consistent with the results of DNA analysis. Furthermore, some isolated Sphingomonas spp. and Caulobacter sp. showed IHP-degrading activity. Therefore, we successfully isolated dominant IHP-degrading bacteria from IHP in an AMF hyphal compartment. These strains may contribute to P transfer from IHP via AMF.
机译:有人建议降解植酸盐(六磷酸肌醇; IHP)有助于丛枝菌根真菌(AMF)介导的从IHP向植物的P转移;但是,迄今为止,尚未分离出与AMF介导的P转移有关的IHP降解剂。我们在这里报告使用改良的诱饵方法分离IHP降解细菌。我们将藻酸盐珠粒用作IHP粉末的载体,并在植物培养实验的AM真菌区室中将其用作可回收的IHP。确认了通过AMF从IHP转移到藻酸盐珠中的IHP,并通过针对16S rRNA基因的变性梯度凝胶电泳和β-螺旋桨植酸酶(BPP)基因的克隆文库方法对藻酸盐珠中提取的DNA进行了分析。在IHP磁珠上生长的微生物的16S rRNA和BPP基因的多样性很简单,而在鞘氨醇单胞菌中则很简单。和Caulobacter spp。占主导地位。总共分离和鉴定了187种利用IHP的细菌,它们与DNA分析的结果一致。此外,一些孤立的鞘氨醇单胞菌属。和Caulobacter sp.。显示出IHP降解活性。因此,我们成功地在AMF菌丝隔室中从IHP中分离了主要的降解IHP的细菌。这些菌株可能有助于通过AMF从IHP进行P转移。

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