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分析解钾菌株 NK851 及其钾长石结合蛋白。

Analysis of the Potassium-Solubilizing Strain NK851 and Its Potassium Feldspar-Binding Proteins.

机构信息

Key Laboratory of Molecular Microbiology and Technology, Ministry of Education, Department of Microbiology, College of Life Sciences, Nankai University, Tianjin 300071, China.

School of Environmental Science and Engineering, Tianjin University, Tianjin 300072, China.

出版信息

Int J Mol Sci. 2023 Sep 18;24(18):14226. doi: 10.3390/ijms241814226.

Abstract

Potassium-solubilizing bacteria are an important microbial group that play a critical role in releasing mineral potassium from potassium-containing minerals, e.g., potassium feldspar. Their application may reduce eutrophication caused by overused potassium fertilizers and facilitate plants to utilize environmental potassium. In this study, a high-efficiency potassium-solubilizing bacterium, named NK851, was isolated from the rhizosphere soil. This bacterium can grow in the medium with potassium feldspar as the sole potassium source, releasing 157 mg/L and 222 mg/L potassium after 3 days and 5 days of incubation, respectively. 16S rDNA sequencing and cluster analysis showed that this strain belongs to . Genome sequencing further revealed that this strain has a genome length of 5,305,142 bp, encoding 5473 genes. Among them, abundant genes are related to potassium decomposition and utilization, e.g., the genes involved in adherence to mineral potassium, potassium release, and intracellular trafficking. Moreover, the strong potassium-releasing capacity of NK851 is not attributed to the acidic pH but is attributed to the extracellular potassium feldspar-binding proteins, such as the elongation factor TU and the enolase that contains potassium feldspar-binding cavities. This study provides new information for exploration of the bacterium-mediated potassium solubilization mechanisms.

摘要

解钾菌是一类重要的微生物,在从含钾矿物(如钾长石)中释放矿物钾方面发挥着关键作用。它们的应用可以减少因过度使用钾肥而导致的富营养化,并促进植物利用环境中的钾。本研究从根际土壤中分离到一株高效解钾菌 NK851,该菌能以钾长石为唯一钾源生长,分别在培养 3 天和 5 天后释放出 157mg/L 和 222mg/L 的钾。16S rDNA 测序和聚类分析表明,该菌株属于. 基因组测序进一步表明,该菌株基因组全长为 5305142bp,编码 5473 个基因。其中,大量基因与钾的分解和利用有关,如与矿物钾附着、钾释放和细胞内转运有关的基因。此外,NK851 具有较强的释钾能力,这不是由于酸性 pH 值所致,而是由于存在与钾长石结合的胞外蛋白,如含有钾长石结合腔的延伸因子 TU 和烯醇酶。本研究为探索细菌介导的钾溶解机制提供了新的信息。

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