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Bioedaphic stimulation and physiological response in Cicer arietinum bioaugmented with nutrient-solubilizing and pesticide-degrading Burkholderia species

dc.contributor.authorSatya, Shalni
dc.contributor.authorDashora, Milap
dc.contributor.authorDar, Mohd Ashraf
dc.contributor.authorPalsania, Preksha
dc.contributor.authorKaushik, Garima
dc.date.accessioned2026-06-27T15:31:43Z
dc.date.issued2026
dc.description.abstractThe escalating population has intensified the demand for sustainable agricultural practices that address nutrient deficiencies and pesticide pollution in soil. This study explores the dual potential of soil bacteria in nutrient solubilization and pesticide degradation, addressing two major challenges by three strains (SG1, SG5, and SG6), identified as Burkholderia spp. Qualitative and quantitative analysis revealed that strains had high solubilization efficiency for phosphate (PO43--P) (530 %- 1053.75 mg.L-1), potassium (K+) (367 %- 11.5 mg.L-1), and zinc (Zn) (490 %- 838.04 mg.L-1), validated by reduced pH and an increased electrical conductivity (EC). B. cenocepacia demonstrated maximum pesticide degradation (quinalphos), showing the highest degradation rates for both analytical (40.56 %) and commercial grade (74.05 %) of pesticide. Pot experiments with Cicer arietinum L. confirmed these findings while inoculating with Burkholderia spp., which significantly improved soil properties like increasing soil organic matter (up to 11.06 %), total organic carbon (6.41 %), and nutrient levels, including PO43--P, K+ (146.5 mg kg-1), and Zn (775.6 mg kg-1). Correlation analysis showed significant association in leaf area and pigment levels, while stem proliferation traded off against it. Principal Component Analysis (PCA) revealed that different treatments uniquely enhanced plant performance. B. lata increased biomass and stress tolerance, B. cenocepacia improved root physiology and nutrient uptake, while B. orbicola promoted morphological development. Hence, Burkholderia spp. can be promoted as effective bioinoculants for enhancing nutrient availability and bioremediation of pesticide-contaminated soils, while enhancing plant growth, offering a promising strategy for sustainable agriculture and improved soil health, leading towards Sustainable Development Goals (SDG) 12.en
dc.description.sponsorshipDepartment of Science & technology-Anusandhan National Research Foundation (ANRF) [ANRF-CRG/2022/002534]
dc.description.urihttps://doi.org/10.1016/j.plaphy.2026.111016
dc.identifier.doi10.1016/j.plaphy.2026.111016
dc.identifier.eissn1873-2690
dc.identifier.issn0981-9428
dc.identifier.pubmed41529506
dc.identifier.urihttps://hdl.handle.net/20.500.14981/71566
dc.identifier.volume231
dc.identifier.wos001667705600001
dc.language.isoeng
dc.publisherELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
dc.relation.ispartofPLANT PHYSIOLOGY AND BIOCHEMISTRY
dc.rightsopenAccess
dc.subjectBioinoculant
dc.subjectBiodegradation
dc.subjectBacteria
dc.subjectSolubilization
dc.subjectQuinalphos
dc.subjectSINGLE-SOLUTION METHOD
dc.subjectCHICKPEA GROWTH
dc.subjectSOIL
dc.subjectPHOSPHATE
dc.subjectZINC
dc.subjectTOXICITY
dc.subjectYIELD
dc.subjectPlant Sciences
dc.titleBioedaphic stimulation and physiological response in Cicer arietinum bioaugmented with nutrient-solubilizing and pesticide-degrading Burkholderia species
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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