Altimira Fabiola, Godoy Sebastián, Arias-Aravena Matias, Araya Bárbara, Montes Christian, Castro Jean Franco, Dardón Elena, Montenegro Edgar, Pineda Wilson, Viteri Ignacio, Tapia Eduardo
Laboratorio de Entomología y Biotecnología, Instituto de Investigaciones Agropecuarias, INIA La Platina, Santiago 8831314, Chile.
Department of Plant Pathology and Microbiology, Iowa State University, Ames, IA 50011, USA.
Microorganisms. 2022 Mar 22;10(4):670. doi: 10.3390/microorganisms10040670.
The RGM 2450 and RGM 2529 strains were isolated from the rhizosphere of plants presenting resilience to abiotic and biotic stress conditions. To understand the implications of bacteria in resilience, a genomic and experimental analysis was carried out on their biostimulant and phytopathogenic antagonist properties. Genome analyses of both strains indicated that they have the potential to synthesize bioactive compounds such as the battery of non-ribosomal peptides, polyketides, extracellular enzymes and phytohormones. These results were consistent with the antagonistic activities of both strains against the phytopathogens , , and . They also showed the capacity to solubilize phosphorus, fix nitrogen and produce indole acetic acid. This was observed in tomato seedlings grown from seeds inoculated with the mixture of strains which presented significantly greater length as well as wet and dry weight in comparison with the treatments individually inoculated with each strain and the control. Accordingly, the combination of RGM 2450 and RGM 2529 showed synergistic biostimulant activity. These findings contribute new knowledge of the genomic and metabolomic properties taking part in the symbiotic interactions between these strains and the plants and uphold the combined use of both strains as a biostimulant.
RGM 2450和RGM 2529菌株是从对非生物和生物胁迫条件具有抗性的植物根际中分离出来的。为了了解细菌在抗性中的作用,对它们的生物刺激剂和植物病原拮抗剂特性进行了基因组和实验分析。两种菌株的基因组分析表明,它们具有合成生物活性化合物的潜力,如一系列非核糖体肽、聚酮化合物、细胞外酶和植物激素。这些结果与两种菌株对植物病原体、、和的拮抗活性一致。它们还表现出溶解磷、固定氮和产生吲哚乙酸的能力。在用菌株混合物接种种子培育的番茄幼苗中观察到了这一点,与单独接种每种菌株的处理和对照相比,这些幼苗的长度以及湿重和干重明显更大。因此,RGM 2450和RGM 2529的组合显示出协同生物刺激活性。这些发现为参与这些菌株与植物之间共生相互作用的基因组和代谢组学特性提供了新知识,并支持将两种菌株联合用作生物刺激剂。