Literature DB >> 34597252

Copper oxide (CuO) and manganese oxide (MnO) nanoparticles induced biomass accumulation, antioxidants biosynthesis and abiotic elicitation of bioactive compounds in callus cultures of Ocimum basilicum (Thai basil).

Saher Nazir1, Hasnain Jan1, Gouhar Zaman1, Taimoor Khan1,2, Hajra Ashraf1, Bisma Meer1, Muhammad Zia1, Samantha Drouet3, Christophe Hano3, Bilal Haider Abbasi1.   

Abstract

Nano-elicitation is one among the prioritised strategies considered globally for sustainable and uniform production of industrially important medicinal compounds. Ocimum basilicum (Thai basil), a renowned medicinal species is a reservoir of commercially vital metabolites and proved for its health assuring effects in cancer, diabetes, microbial and cardiovascular diseases. However, its consumption and industrial demand raised intent to divert towards better alternates for ensuring sustainable production of medicinal compounds. Herein, we investigated the comparative potential of metal oxide [copper oxide (CuO) and manganese oxide (MnO)] nanoparticles to elicit the biosynthesis of bioactive metabolites and antioxidative capacity of O.basilicum callus cultures. Results showed that callus grown on MS media supplemented with 10 mg/L CuO-NPs resulted in the highest biomass accumulation (FW: 172.8 g/L, DW: 16.7 g/L), phenolic contents (TPC: 27.5 mg/g DW), and flavonoid contents (TFC: 9.1 mg/g DW) along with antioxidant activities (DPPH: 94%, ABTS: 881 μM TEAC, FRAP: 386 μM TEAC) compared with MnO-NPs and control. Likewise, the Superoxide dismutase (SOD: 1.28 nM/min/mg FW) and Peroxidase (POD: 0.48 nM/min/mg FW) activities were also recorded maximum in CuO-NPs elicited cultures than MnO-NPs and control. Moreover, the HPLC results showed that rosmarinic acid (11.4 mg/g DW), chicoric acid (16.6 mg/g DW), eugenol (0.21 mg/g DW) was found optimum in cultures at 10 mg/L CuO-NPs. Overall, it can be concluded that CuO nanoparticles can be effectively used as a elicitor for biosynthesis of metabolites in callus cultures of O. basilicum (Thai basil). The study is indeed a contribution to the field that will help decoding the mechanism of action of CuO NPs. However, further molecular investigations are needed to fully develop understanding about the metabolic potential of O. bascillicum and scalling up this protocol for bulkup production of bioactive compounds.

Entities:  

Keywords:  CuO-NPs; Elicitation; MnO-NPs; O. basilicum; antioxidants; secondary metabolites

Mesh:

Year:  2021        PMID: 34597252     DOI: 10.1080/21691401.2021.1984935

Source DB:  PubMed          Journal:  Artif Cells Nanomed Biotechnol        ISSN: 2169-1401            Impact factor:   5.678


  2 in total

1.  Biogenic silver nanoparticles improve bioactive compounds in medicinal plant Juniperus procera in vitro.

Authors:  Abdalrhaman M Salih; Fahad Al-Qurainy; Salim Khan; Mohammad Nadeem; Mohamed Tarroum; Hassan O Shaikhaldein
Journal:  Front Plant Sci       Date:  2022-09-26       Impact factor: 6.627

Review 2.  The Effect of Ocimum basilicum L. and Its Main Ingredients on Respiratory Disorders: An Experimental, Preclinical, and Clinical Review.

Authors:  Ahmad Reza Aminian; Reza Mohebbati; Mohammad Hossein Boskabady
Journal:  Front Pharmacol       Date:  2022-01-03       Impact factor: 5.810

  2 in total

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