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开发基于基因组的策略以确认含有多种菌株的生物投入物中的微生物身份:一种应用于携带大豆慢生根瘤菌的接种剂的简便、快速且低成本的多重PCR方法。

Developing a genomic-based strategy to confirm microbial identity in bio-inputs containing multiple strains: an easy, fast, and low-cost multiplex PCR applied to inoculants carrying soybean Bradyrhizobium.

作者信息

de Paiva Rolla-Santos Amanda Alves, Terra Leonardo Araujo, Ribeiro Renan Augusto, Nogueira Marco Antonio, Hungria Mariangela

机构信息

CNPq, Ed. Telemundi II, SAUS, Quadra 01 Lotes 1 E 6, CEP, Brasília, Federal District, Brazil.

Embrapa Soja, Soil Biotechnology Laboratory, C.P. 4006, 86.085-981, Londrina, Paraná, Brazil.

出版信息

Braz J Microbiol. 2024 Sep;55(3):2869-2877. doi: 10.1007/s42770-024-01441-8. Epub 2024 Jul 12.

Abstract

Brazil stands out in research, industrial development, and farmers' use of microbial inoculants, with an emphasis on getting benefits from the biological nitrogen fixation process with the soybean crop. Nowadays, about 140 million doses of inoculants are commercialized annually for the soybean in the country, and strain identification is achieved by rep-PCR, an effective but time-consuming method. Aiming to develop an easy, low-cost, and low-time-consuming method, we used a complete genome-based approach based on the unequivocal identification of unique genes present in the genomes of each of the four Bradyrhizobium strains used in commercial inoculants: Bradyrhizobium elkanii strains SEMIA 587 and SEMIA 5019, Bradyrhizobium japonicum SEMIA 5079, and Bradyrhizobium diazoefficiens SEMIA 5080. The unique pairs of primers able to amplify genomic regions of different sizes allowed the identification of the four strains in a simple multiplex polymerase chain reaction (PCR). Validation was confirmed by using single colonies, multiple cultures, and commercial inoculants. The number of labor hours of a technician was 3.08 times higher, and the final cost was 3.25 times higher in the rep-PCR than in the multiplex PCR. Most importantly, the results for multiplex PCR were obtained on the same day, in contrast with 15 days in the traditional methodology. The genomic approach developed can be easily applied to a variety of microbial inoculants worldwide, in addition to studies of ecology and evaluation of the competitiveness of the strains.

摘要

巴西在微生物接种剂的研究、产业发展及农民使用方面表现突出,尤其注重从大豆作物的生物固氮过程中获取益处。如今,该国每年约有1.4亿剂大豆接种剂实现商业化,菌株鉴定通过rep-PCR完成,这是一种有效但耗时的方法。为开发一种简便、低成本且耗时短的方法,我们采用了基于全基因组的方法,该方法基于对商业接种剂中使用的四种慢生根瘤菌菌株(慢生根瘤菌埃尔坎ii菌株SEMIA 587和SEMIA 5019、日本慢生根瘤菌SEMIA 5079以及高效固氮慢生根瘤菌SEMIA 5080)各自基因组中独特基因的明确鉴定。能够扩增不同大小基因组区域的独特引物对使得在简单的多重聚合酶链反应(PCR)中鉴定这四种菌株成为可能。通过使用单菌落、混合培养物及商业接种剂进行了验证。与多重PCR相比,rep-PCR中技术人员的劳动工时高出3.08倍,最终成本高出3.25倍。最重要的是,多重PCR的结果在同一天获得,而传统方法则需要15天。所开发的基因组方法除了可用于菌株生态学研究和竞争力评估外,还可轻松应用于全球各种微生物接种剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/def9/11405733/f98237bec23b/42770_2024_1441_Fig1_HTML.jpg

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