Utilize este identificador para referenciar este registo: https://hdl.handle.net/10316/96866
Título: Plant growth promoting bacteria improve growth and phytostabilization potential of Zea mays under chromium and drought stress by altering photosynthetic and antioxidant responses
Autor: Vishnupradeep, R.
Bruno, L. Benedict
Taj, Zarin
Karthik, Chinnannan
Challabathula, Dinakar
Tripti, null
Kumar, Adarsh
Freitas, Helena 
Rajkumar, Mani 
Palavras-chave: Bio-inoculant; Chromium; Drought; Photosynthesis; Phytostabilization; Plant growth promoting bacteria
Data: 2022
Editora: Elsevier
Título da revista, periódico, livro ou evento: Environmental Technology and Innovation
Volume: 25
Resumo: Drought in heavy metal polluted arid and semiarid regions severely inhibits the plant growth and phytoremediation potential by affecting photosynthesis, antioxidant defense mechanism, and other biochemical processes. In the present study, we explored the role of plant growth-promoting bacteria (PGPB) on Zea mays growth and phytoremediation efficiency in Chromium (Cr) contaminated soils under drought stress by assessing plant stress tolerance, photosynthetic gas exchange activities, chlorophyll fluorescence, and Cr accumulation. Two efficient Cr and drought resistant PGPB with the potential to reduce Cr(VI) to Cr(III) and produce plant growth-promoting metabolites even under Cr, drought, or Cr+drought stress conditions were isolated and identified as Providencia sp. (TCR05) and Proteus mirabilis (TCR20). In pot experiments, the inoculation of TCR05 and TCR20 increased the plant growth, pigments, protein, phenolics, and relative water content and decreased the lipid peroxidation, proline, and superoxide dismutase activity under Cr, drought, or Cr+drought conditions. Irrespective of stress treatment, TCR05 and TCR20 also improved plant photosynthetic efficiency by increasing the CO2 assimilation rate, stomatal conductance to water vapor, transpiration rate, maximum quantum efficiency of PSII, actual quantum efficiency of PSII, electron transport rate, photochemical quenching, reducing the internal CO2 concentration and non-photochemical quenching. Besides, the PGPB decreased the translocation of Cr through immobilization of Cr in root. These results denoted that strains TCR05 and TCR20 could be a capable bio-inoculant for improving plant growth and phytostabilization practices in Cr contaminated sites even under water-limited conditions. © 2021 The Authors
URI: https://hdl.handle.net/10316/96866
ISSN: 23521864
DOI: 10.1016/j.eti.2021.102154
Direitos: openAccess
Aparece nas coleções:I&D CFE - Artigos em Revistas Internacionais

Ficheiros deste registo:
Ficheiro Descrição TamanhoFormato
1-s2.0-S2352186421007665-main.pdf2.01 MBAdobe PDFVer/Abrir
Mostrar registo em formato completo

Citações SCOPUSTM   

56
Visto em 6/mai/2024

Citações WEB OF SCIENCETM

46
Visto em 2/mai/2024

Visualizações de página

145
Visto em 7/mai/2024

Downloads

103
Visto em 7/mai/2024

Google ScholarTM

Verificar

Altmetric

Altmetric


Este registo está protegido por Licença Creative Commons Creative Commons