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微进化而非大基因组差异决定了田间条件下豆科植物与根瘤菌共生互作的有效性。

Microevolution Rather than Large Genome Divergence Determines the Effectiveness of Legume-Rhizobia Symbiotic Interaction Under Field Conditions.

作者信息

Jozefkowicz Cintia, Brambilla Silvina, Frare Romina, Stritzler Margarita, Puente Mariana, Piccinetti Carlos, Soto Gabriela, Ayub Nicolás

机构信息

Consejo Nacional de Investigaciones Científicas y Técnicas, CABA, Buenos Aires, Argentina.

Instituto de Genética Ewald A. Favret (INTA), De los Reseros S/N, Castelar C25(1712), Buenos Aires, Argentina.

出版信息

J Mol Evol. 2017 Oct;85(3-4):79-83. doi: 10.1007/s00239-017-9808-6. Epub 2017 Aug 21.

Abstract

Despite the vast screening for natural nitrogen-fixing isolates by public and private consortia, no significant progresses in the production of improved nitrogen-fixing inoculants for alfalfa production have been made in the last years. Here, we present a comprehensive characterization of the nitrogen-fixing strain Ensifer meliloti B399 (originally named Rhizobium meliloti 102F34), probably the inoculant most widely used in alfalfa production since the 1960s. Complete nucleotide sequence and genome analysis of strain B399 showed that the three replicons present in this commercial strain and the model bacterium Ensifer meliloti 1021 are extremely similar to each other in terms of nucleotide identity and synteny conservation. In contrast to that observed in B399-treated plants, inoculation of plants with strain 1021 did not improve nitrogen content in different alfalfa cultivars under field conditions, suggesting that a small genomic divergence can drastically impact on the symbiotic phenotype. Therefore, in addition to the traditional screening of natural nitrogen-fixing isolates, the genome engineering of model strains could be an attractive strategy to improve nitrogen fixation in legume crops.

摘要

尽管公共和私人财团对天然固氮菌株进行了大量筛选,但在过去几年中,用于苜蓿生产的改良固氮接种剂的生产并未取得显著进展。在此,我们对固氮菌株苜蓿中华根瘤菌B399(最初命名为苜蓿根瘤菌102F34)进行了全面表征,它可能是自20世纪60年代以来苜蓿生产中使用最广泛的接种剂。菌株B399的完整核苷酸序列和基因组分析表明,该商业菌株和模式细菌苜蓿中华根瘤菌1021中存在的三个复制子在核苷酸同一性和共线性保守性方面彼此极为相似。与用B399处理的植物中观察到的情况相反,在田间条件下,用菌株1021接种植物并不能提高不同苜蓿品种的氮含量,这表明微小的基因组差异可能会对共生表型产生巨大影响。因此,除了传统的天然固氮菌株筛选外,模式菌株的基因组工程可能是提高豆科作物固氮能力的一种有吸引力的策略。

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