Performance of soybeans inoculated with multifunctional microorganisms under water-deficit stress.

dc.contributorMICHEL ALDRIGHI, UNIVERSIDADE FEDERAL DE GOIÁS; JULIANA DOMINGUES LIMA, UNIVERSIDADE ESTADUAL PAULISTA JÚLIO DE MESQUITA FILHO; PAULO IVAN FERNANDES JUNIOR, CPATSA; ENDERSON PETRONIO DE BRITO FERREIRA, CNPAF.
dc.creatorALDRIGHI, M.
dc.creatorLIMA, J. D.
dc.creatorFERNANDES JUNIOR, P. I.
dc.creatorFERREIRA, E. P. de B.
dc.date2025-09-15T12:01:13Z
dc.date2025-09-15T12:01:13Z
dc.date2025-09-12
dc.date2025
dc.date.accessioned2026-07-07T06:01:09Z
dc.descriptionSoybeans (Glycine max (L.) Merr.) are mainly grown in Brazil during the rainy season. However, there are typically periods of rainfall deficiency, which causeswater-deficit stress to the crop. Plant growth-promoting rhizobacteria (PGPR) can help alleviate these stresses by inducing water deficit tolerance. The objective of this study was to evaluate the role of PGPR in enhancing soybean tolerance to water-deficit stress. Six PGPR isolates, two for induction of water-deficit tolerance (ESA441, BRM 034008), two AIA-producing (Ab-V5, BRM 063574), and two phosphate solubilizing (BRM 063573, BRM 67205), and their combination were evaluated, fora total of 16 treatments. The experiment was conducted in a greenhouse using a ran-domized block design with three replicates. Effects were measured on gas exchange parameters (stomatal conductance, transpiration, internal CO2 concentration, and photosynthetic rate), growth parameters (shoot dry weight, root dry weight, root length, root surface area, root diameter, and root volume), and yield components(pod weight, number of pods, number of grains, and grain weight). Co-inoculationsignificantly reduces the effects of water stress on gas exchange, plant growth, and productivity compared to single inoculation. Notable combinations, such as BRM063574 + BRM 67205 + BRM 034008 and BRM 063574 + BRM 063573 + ESA441, improved root and shoot growth under stress conditions. Yield components alsoimproved with co-inoculations, with combinations such as BRM 063574 + BRM67205 + ESA 441 showing the highest efficacy. These results suggest that specific PGPR co-inoculations can improve soybean resilience to water deficit stress and promote better growth and yield.
dc.identifierSoil Science Society of America Journal, v. 89, e70131, 2025.
dc.identifierhttp://www.alice.cnptia.embrapa.br/alice/handle/doc/1178756
dc.identifierhttps://doi.org/10.1002/saj2.70131
dc.identifier.urihttp://hdl.handle.net/123456789/504550
dc.languageeng
dc.rightsopenAccess
dc.subjectEstresse hídrico
dc.subjectSoja
dc.subjectBactéria
dc.subjectGlycine Max
dc.subjectMicrorganismo
dc.subjectSoybeans
dc.titlePerformance of soybeans inoculated with multifunctional microorganisms under water-deficit stress.
dc.typeArtigo de periódico

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