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来自于……的固氮基因簇在……中的异源表达 。 你提供的原文不完整,“from”和“in”后面缺少具体内容,请补充完整以便我能准确翻译。

Heterologous Expression of the Nitrogen-Fixing Gene Cluster from in .

作者信息

Wang Xiuling, Gao Shiqing, Fu Jun, Li Ruijuan

机构信息

State Key Laboratory of Microbial Technology, Shandong University, Qingdao 266237, China.

出版信息

Microorganisms. 2025 Jun 6;13(6):1320. doi: 10.3390/microorganisms13061320.

Abstract

Microbially mediated biological nitrogen fixation is pivotal to sustainable agricultural development. However, optimizing nitrogenase activity in native biological nitrogen-fixing bacteria has been hindered by the complexities of genetic manipulation. Heterologous expression has served as a foundational strategy for engineering next-generation nitrogen-fixing microbial agents. In this study, genomic analysis of CR1 revealed an 11 kb nitrogen-fixing () gene cluster. The cluster was first synthesized and then assembled using ExoCET technology and finally integrated into the genome of 168 via double-exchange recombination. RT-PCR confirmed the transcription of the cluster; however, no nitrogenase activity was detected in the acetylene reduction assay. A promoter replacement strategy (replacing the native promoter with P) enabled to produce active nitrogenase. However, stronger promoters-namely, P and P-did not further enhance nitrogenase activity. This demonstrates that promoter selection requires balancing transcriptional strength with systemic compatibility, particularly for metalloenzymes demanding precise cofactor assembly. This is the first report describing the heterologous expression of the gene cluster in , establishing a foundation for engineering high-efficiency nitrogen-fixing biofertilizers.

摘要

微生物介导的生物固氮对于可持续农业发展至关重要。然而,由于基因操作的复杂性,优化天然生物固氮细菌中的固氮酶活性受到了阻碍。异源表达已成为工程化下一代固氮微生物制剂的基础策略。在本研究中,对CR1的基因组分析揭示了一个11 kb的固氮()基因簇。该基因簇首先被合成,然后使用ExoCET技术进行组装,最后通过双交换重组整合到168的基因组中。RT-PCR证实了该基因簇的转录;然而,在乙炔还原试验中未检测到固氮酶活性。启动子替换策略(用P替换天然启动子)使能够产生有活性的固氮酶。然而,更强的启动子——即P和P——并没有进一步提高固氮酶活性。这表明启动子的选择需要在转录强度和系统兼容性之间取得平衡,特别是对于需要精确辅因子组装的金属酶。这是第一篇描述该基因簇在中的异源表达的报告,为工程化高效固氮生物肥料奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e68b/12195393/304daa5dd567/microorganisms-13-01320-g001.jpg

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