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基于基因组的土壤细菌分离株解磷能力鉴定

Genome-based identification of phosphate-solubilizing capacities of soil bacterial isolates.

作者信息

Chen Xiaoqing, Zhao Yiting, Huang Shasha, Peñuelas Josep, Sardans Jordi, Wang Lei, Zheng Bangxiao

机构信息

School of Environmental Science and Engineering, Xiamen University of Technology, Xiamen, 361024, People's Republic of China.

Xiamen Key Laboratory of Membrane Research and Application, Xiamen, 361024, People's Republic of China.

出版信息

AMB Express. 2024 Jul 29;14(1):85. doi: 10.1186/s13568-024-01745-w.

Abstract

Identifying genomic markers for phosphate-solubilizing bacteria (PSB) is vital for advancing agricultural sustainability. This study utilizes whole-genome sequencing and comprehensive bioinformatics analysis, examining the genomes of 76 PSB strains with the aid of specialized genomic databases and analytical tools. We have identified the pqq gene cluster, particularly the pqqC gene, as a key marker for (P) solubilization capabilities. The pqqC gene encodes an enzyme that catalyzes the conversion of precursors to 2-keto-D-gluconic acid, which significantly enhances P solubilization in soil. This gene's importance lies not only in its biochemical function but also in its prevalence and effectiveness across various PSB strains, distinguishing it from other potential markers. Our study focuses on Burkholderia cepacia 51-Y1415, known for its potent solubilization activity, and demonstrates a direct correlation between the abundance of the pqqC gene, the quantitative release of P, and the production of 2-keto-D-gluconic acid over a standard 144-h cultivation period under standardized conditions. This research not only underscores the role of the pqqC gene as a universal marker for the rapid screening and functional annotation of PSB strains but also highlights its implications for enhancing soil fertility and crop yields, thereby contributing to more sustainable agricultural practices. Our findings provide a foundation for future research aimed at developing targeted strategies to optimize phosphate solubilization, suggesting areas for further investigation such as the integration of these genomic insights into practical agricultural applications to maximize the effectiveness of PSB strains in real-world soil environments.

摘要

鉴定解磷细菌(PSB)的基因组标记对于促进农业可持续发展至关重要。本研究利用全基因组测序和全面的生物信息学分析,借助专门的基因组数据库和分析工具,对76株解磷细菌菌株的基因组进行了研究。我们已确定pqq基因簇,特别是pqqC基因,是解磷能力的关键标记。pqqC基因编码一种酶,该酶催化前体转化为2-酮-D-葡萄糖酸,这显著增强了土壤中的解磷能力。该基因的重要性不仅在于其生化功能,还在于其在各种解磷细菌菌株中的普遍性和有效性,这使其有别于其他潜在标记。我们的研究聚焦于洋葱伯克霍尔德菌51-Y1415,该菌株以其强大的解磷活性而闻名,并证明在标准化条件下,经过标准的144小时培养期,pqqC基因的丰度、磷的定量释放与2-酮-D-葡萄糖酸的产生之间存在直接关联。这项研究不仅强调了pqqC基因作为解磷细菌菌株快速筛选和功能注释的通用标记的作用,还突出了其对提高土壤肥力和作物产量的影响,从而有助于实现更可持续的农业实践。我们的研究结果为未来旨在制定优化解磷靶向策略的研究奠定了基础,提出了进一步研究的领域,例如将这些基因组见解整合到实际农业应用中,以在现实世界的土壤环境中最大限度地提高解磷细菌菌株的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a19/11289785/25c35c5e6168/13568_2024_1745_Fig1_HTML.jpg

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