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从磷矿中分离解磷真菌及其对小麦幼苗生长的影响。

Isolation of phosphate-solubilizing fungi from phosphate mines and their effect on wheat seedling growth.

作者信息

Xiao Chunqiao, Chi Ruan, He Huan, Qiu Guanzhou, Wang Dianzuo, Zhang Wenxue

机构信息

Key Laboratory of Biometallurgy of Ministry of Education, School of Resources Processing and Bioengineering, Central South University, Changsha 410083, China.

出版信息

Appl Biochem Biotechnol. 2009 Nov;159(2):330-42. doi: 10.1007/s12010-009-8590-3. Epub 2009 Mar 10.

Abstract

Three phosphate-solubilizing fungi, identified as Penicillium expansum, Mucor ramosissimus, and Candida krissii, were isolated from phosphate mines (Hubei, People's Republic of China) and characterized. All the isolates demonstrated diverse levels of phosphate-solubilizing capability in National Botanical Research Institute's phosphate growth medium containing rock phosphate as sole phosphate source. Acidification of culture medium seemed to be the main mechanism for rock phosphate solubilization. Indeed, citric acid, oxalic acid, and gluconic acid were shown to be present in the culture medium inoculated with these isolates. Moreover, the isolates produced acid and alkaline phosphatases in culture medium, which may also be helpful for RP solubilization. A strong negative correlation between content of soluble phosphorus and pH (r = - 0.89; p < 0.01) in culture medium was observed in this study. All the isolates promoted growth, soil available phosphorus, phosphorus, and nitrogen uptake of wheat seedling in field soil containing rock phosphate under pot culture conditions, thus demonstrating the capability of these isolates to convert insoluble form of phosphorus into plant available form from rock phosphate, and therefore hold great potential for development as biofertilizers to enhance soil fertility and promote plant growth.

摘要

从中国湖北省的磷矿中分离并鉴定出三种解磷真菌,分别为扩展青霉、总状毛霉和克瑞假丝酵母。在以磷酸岩作为唯一磷源的国家植物研究所磷生长培养基中,所有分离菌株均表现出不同程度的解磷能力。培养基酸化似乎是磷酸岩溶解的主要机制。事实上,在接种这些分离菌株的培养基中检测到了柠檬酸、草酸和葡萄糖酸。此外,这些分离菌株在培养基中产生了酸性和碱性磷酸酶,这也可能有助于磷酸岩的溶解。本研究观察到培养基中可溶性磷含量与pH值之间存在强烈的负相关(r = - 0.89;p < 0.01)。在盆栽条件下,所有分离菌株均能促进含磷酸岩的田间土壤中小麦幼苗的生长、土壤有效磷、磷和氮的吸收,从而证明这些分离菌株能够将磷酸岩中不溶性磷转化为植物可利用的形式,因此作为生物肥料开发以提高土壤肥力和促进植物生长具有巨大潜力。

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