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从芦苇根际土壤中分离出的A10的铯积累及促进植物生长特性

Cesium accumulation and plant growth promotion characteristics of A10 isolated from L. rhizosphere soil.

作者信息

Yuan Shan, Chen Xi, Han Na, Sun Ming, Yang Chao-Hui, Wang Ming-Xuan, Li Qun, Du Wen-Ping, Wu Guo

机构信息

Key Laboratory of the Evaluation and Monitoring of Southwest Land Resources (Ministry of Education), Sichuan Normal University, Chengdu, China.

College of Life Science, Sichuan Normal University, Chengdu, China.

出版信息

Int J Phytoremediation. 2025;27(1):46-56. doi: 10.1080/15226514.2024.2399771. Epub 2024 Sep 3.

Abstract

The combined microbial-plant remediation has increasingly been used to remediate heavy metal-contaminated soil. Some microorganisms could enhance phytoremediation efficiency by solubilizing heavy metal and improve plant growth by producing phytohormones in the heavy metal contaminated soils. In the present study, a strong cesium (Cs)-tolerant fungal strain was identified from soil microorganisms contaminated with Cs, and the enrichment conditions for Cs were optimized. Furthermore, the effects of the A10 fermentation solution on the growth of Indian mustard ( L.) seedlings were investigated. The results indicated that the optimal combination of factors consisted of a culture temperature of 28 °C, pH7.0, initial concentration of Cs at 5.91 g·L. The maximum enrichment of Cs in the A10 was up to 75.36 mg·g DW. In addition, the enrichment of Cs in Indian mustard was significantly enhanced by the application of the A10 fermentation solution, and the growth of Indian mustard was promoted under Cs stress. The present study has expanded the repertoire of microbial resources available for facilitating the Cs contaminated soil, thereby enhancing its applicability in the phytoremediation strategies.

摘要

微生物-植物联合修复已越来越多地用于修复重金属污染土壤。在重金属污染土壤中,一些微生物可通过溶解重金属来提高植物修复效率,并通过产生植物激素促进植物生长。本研究从铯污染的土壤微生物中筛选出一株耐铯能力较强的真菌菌株,并优化了其铯富集条件。此外,研究了A10发酵液对印度芥菜幼苗生长的影响。结果表明,最佳培养条件为培养温度28℃、pH值7.0、初始铯浓度5.91 g·L。A10菌株对铯的最大富集量可达75.36 mg·g DW。此外,A10发酵液显著提高了印度芥菜对铯的富集能力,并促进了铯胁迫下印度芥菜的生长。本研究拓展了可用于修复铯污染土壤的微生物资源,提高了其在植物修复策略中的适用性。

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