Scientific and Production Center "Armbiotechnology" NAS RA (Laboratory of Strain-Producers of BAS and Biosynthesis), Gyurjyan 14, 0056, Yerevan, Armenia.
Yerevan State University (Chair of Pharmaceutical Chemistry and Pharmacognosy), Alex Manoogian 1, 0025, Yerevan, Armenia.
Curr Microbiol. 2022 Jul 14;79(9):251. doi: 10.1007/s00284-022-02948-9.
Annually, about, more than 7% of the Earth's land area becomes inappropriate for agriculture subsequently of salinization and desertification. Biofertilizers based on halophilic nitrogen-fixing bacteria can restore saline soils and stimulate plant growth, having a positive effect on germination, development of stems and roots, and fruiting. The aim of this work was to obtain osmo-resistant (Osm-r) nitrogen-fixing mutants isolated from saline soils of Armenia and selection of the best ones. To achieve this goal, we have obtained a collection of Osm-r strains based on soil nitrogen-fixing bacteria without the use of genetically modified technologies, which is an innovation in sphere of soil microbiology, and, especially, in nitrogen-fixing microorganisms. These mutants were obtained on the basis of Agrobacterium sp. Y-2 and Agrobacterium sp. M-1 nitrogen-fixing strains, both spontaneously and induced. Four strains with the higher nitrogen-fixing ability, which kept their vital activity in an environment with a high concentration of salts, were selected from collection of mutants. Selected strains in the future can become the basis for creating a new, effective, environmentally friendly biofertilizer for saline soils because they are plasmidless and have the highest priority for intensive use in agriculture.
每年,地球超过 7%的陆地面积因盐渍化和沙漠化而不适宜农业。基于嗜盐固氮细菌的生物肥料可以恢复盐渍土壤并刺激植物生长,对发芽、茎和根的发育以及结果有积极影响。这项工作的目的是从亚美尼亚的盐碱地中获得耐盐(Osm-r)固氮突变体,并选择最好的突变体。为了实现这一目标,我们获得了一系列基于土壤固氮细菌的 Osm-r 菌株,而无需使用基因改造技术,这在土壤微生物学领域是一项创新,特别是在固氮微生物方面。这些突变体是在自发和诱导的情况下,基于 Agrobacterium sp. Y-2 和 Agrobacterium sp. M-1 固氮菌株获得的。从突变体集中选择了 4 株具有较高固氮能力且在高盐环境中保持活力的菌株。选择的菌株将来可能成为创造新型、有效、环保的盐碱地生物肥料的基础,因为它们没有质粒,并且在农业中优先进行集约化使用。