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Metal-tolerant morganella morganii isolates can potentially mediate nickel stress tolerance in Arabidopsis by upregulating antioxidative enzyme activities.
Naqqash, Tahir; Aziz, Aeman; Baber, Muhammad; Shahid, Muhammad; Sajid, Muhammad; Emanuele, Radicetti; Gaafar, Abdel-Rhman Z; Hodhod, Mohamed S; Haider, Ghulam.
Affiliation
  • Naqqash T; Institute of Molecular Biology and Biotechnology, Bahauddin Zakariya University, Multan, Pakistan.
  • Aziz A; Institute of Molecular Biology and Biotechnology, Bahauddin Zakariya University, Multan, Pakistan.
  • Baber M; Institute of Molecular Biology and Biotechnology, Bahauddin Zakariya University, Multan, Pakistan.
  • Shahid M; Department of Bioinformatics and Biotechnology, Government College University, Faisalabad, Pakistan.
  • Sajid M; Department of Biotechnology, University of Okara, Okara, Pakistan.
  • Emanuele R; Department of Chemical, Pharmaceutical and Agricultural Sciences, University of Ferrara, Ferrara, Italy.
  • Gaafar AZ; Department of Botany and Microbiology, College of Science, King Saud University, Riyadh, Saudi Arabia.
  • Hodhod MS; Faculty of Biotechnology, October University for Modern Sciences & Arts, 6th October City, Egypt.
  • Haider G; Department of Plant Biotechnology, Atta-ur-Rahman School of Applied Biosciences, National University of Sciences and Technology, Islamabad, Pakistan.
Plant Signal Behav ; 19(1): 2318513, 2024 Dec 31.
Article in En | MEDLINE | ID: mdl-38526224
ABSTRACT
Plant growth-promoting rhizobacteria (PGPRs) have been utilized to immobilize heavy metals, limiting their translocation in metal contaminated settings. However, studies on the mechanisms and interactions that elucidate how PGPRs mediate Nickel (Ni) tolerance in plants are rare. Thus, in this study we investigated how two pre-characterized heavy metal tolerant isolates of Morganella morganii (ABT9 and ABT3) improve Ni stress tolerance in Arabidopsis while enhancing its growth and yield. Arabidopsis seedlings were grown for five weeks in control/Ni contaminated (control, 1.5 mM and 2.5 mM) potted soil, in the presence or absence of PGPRs. Plant growth characteristics, quantum yield, and antioxidative enzymatic activities were analyzed to assess the influence of PGPRs on plant physiology. Oxidative stress tolerance was quantified by measuring MDA accumulation in Arabidopsis plants. As expected, Ni stress substantially reduced plant growth (shoot and root fresh weight by 53.25% and 58.77%, dry weight by 49.80% and 57.41% and length by 47.16% and 64.63% over control), chlorophyll content and quantum yield (by 40.21% and 54.37% over control). It also increased MDA content by 84.28% at higher (2.5 mM) Ni concentrations. In contrast, inoculation with M. morganii led to significant improvements in leaf chlorophyll, quantum yield, and Arabidopsis biomass production. The mitigation of adverse effects of Ni stress on biomass observed in M. morganii-inoculated plants was attributed to the enhancement of antioxidative enzyme activities compared to Ni-treated plants. This upregulation of the antioxidative defense mechanism mitigated Ni-induced oxidative stress, leading to improved performance of the photosynthetic machinery, which, in turn, enhanced chlorophyll content and quantum yield. Understanding the underlying mechanisms of these tolerance-inducing processes will help to complete the picture of PGPRs-mediated defense signaling. Thus, it suggests that M. morganii PGPRs candidate can potentially be utilized for plant growth promotion by reducing oxidative stress via upregulating antioxidant defense systems in Ni-contaminated soils and reducing Ni metal uptake.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Arabidopsis / Morganella morganii Language: En Journal: Plant Signal Behav Journal subject: BOTANICA / FISIOLOGIA Year: 2024 Document type: Article Affiliation country: Pakistan Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Arabidopsis / Morganella morganii Language: En Journal: Plant Signal Behav Journal subject: BOTANICA / FISIOLOGIA Year: 2024 Document type: Article Affiliation country: Pakistan Country of publication: United States