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Isolation and characterization of two phosphate-solubilizing fungi from rhizosphere soil of moso bamboo and their functional capacities when exposed to different phosphorus sources and pH environments

机译:不同磷源和PH环境下摩尔竹子根际土壤中磷酸盐溶解真菌的两种磷酸盐溶解真菌的分离与表征

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摘要

Phosphate-solubilizing fungi (PSF) generally enhance available phosphorus (P) released from soil, which contributes to plants' P requirement, especially in P-limiting regions. In this study, two PSF, TalA-JX04 and AspN-JX16, were isolated from the rhizosphere soil of moso bamboo (Phyllostachys edulis) widely distributed in P-deficient areas in China and identified as Talaromyces aurantiacus and Aspergillus neoniger, respectively. The two PSF were cultured in potato dextrose liquid medium with six types of initial pH values ranging from 6.5 to 1.5 to assess acid resistance. Both PSF were incubated in Pikovskaya's liquid media with different pH values containing five recalcitrant P sources, including Ca3(PO4)2, FePO4, CaHPO4, AlPO4, and C6H6Ca6O24P6, to estimate their P-solubilizing capacity. No significant differences were found in the biomass of both fungi grown in media with different initial pH, indicating that these fungi could grow well under acid stress. The P-solubilizing capacity of TalA-JX04 was highest in medium containing CaHPO4, followed by Ca3(PO4)2, FePO4, C6H6Ca6O24P6, and AlPO4 in six types of initial pH treatments, while the recalcitrant P-solubilizing capacity of AspN-JX16 varied with initial pH. Meanwhile, the P-solubilizing capacity of AspN-JX16 was much higher than TalA-JX04. The pH of fermentation broth was negatively correlated with P-solubilizing capacity (p<0.01), suggesting that the fungi promote the dissolution of P sources by secreting organic acids. Our results showed that TalA-JX04 and AspN-JX16 could survive in acidic environments and both fungi had a considerable ability to release soluble P by decomposing recalcitrant P-bearing compounds. The two fungi had potential for application as environment-friendly biofertilizers in subtropical bamboo ecosystem.
机译:解磷真菌(PSF)通常增强可利用磷(P)从土壤中释放出来,这有利于植物P的要求,特别是在P-限制区域。在这项研究中,两个PSF,塔拉-JX04和ASPN-JX16,从的毛竹根际土壤中分离(毛竹)广泛分布在缺磷的地区在中国和分别标识为桔橙篮状菌和曲霉neoniger。两个PSF是在马铃薯葡萄糖液体培养基中培养用六种类型的初始pH值范围为6.5至1.5,以评估耐酸性。两个PSF在Pikovskaya的液体培养基中孵育用含有5种顽抗磷源,包括CA3(PO4)2,的FePO4,磷酸氢钙,磷酸铝,和C6H6Ca6O24P6,估算其P-增溶能力不同的pH值。无显著差异在具有不同初始pH的培养基中生长两个真菌的生物量中发现,这表明这些真菌可酸胁迫下生长良好。塔拉-JX04的P-增溶量为在包含磷酸氢钙,随后CA3(PO4)2,的FePO4,C6H6Ca6O24P6,和磷酸铝在六种类型的初始的pH处理介质最高,ASPN-JX16多样的顽抗P-增溶能力与初始pH。同时,ASPN-JX16的P-溶解能力比塔拉-JX04高得多。发酵液的pH呈负P-增溶能力(P <0.01)相关,提示真菌通过分泌有机酸促进磷源的溶解。我们的研究结果表明,塔拉-JX04和ASPN-JX16可以在酸性环境中生存和真菌都具有通过分解顽抗P-轴承化合物以释放可溶性P相当的能力。这两种真菌已经应用在亚热带竹林生态环境友好的生物肥料的潜力。

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