Literature DB >> 27085357

Effect of Rol Genes on Polyphenols Biosynthesis in Artemisia annua and Their Effect on Antioxidant and Cytotoxic Potential of the Plant.

Erum Dilshad1, Sara Zafar1, Hammad Ismail1, Mohammad Tahir Waheed1, Rosa Maria Cusido2, Javier Palazon2, Bushra Mirza3.   

Abstract

Flavonoids are famous for their antioxidant capacity and redox potential. They can combat with cell aging, lipid peroxidation, and cancer. In the present study, Artemisia annua hybrid (Hyb8001r) was subjected to qualitative and quantitative analysis of flavonoids through HPLC. Rol genes transgenics of A. annua were also evaluated for an increase in their flavonoid content along with an increase in antioxidant and cytotoxic potential. This was also correlated with the expression level of flavonoids biosynthetic pathway genes as determined by real-time qPCR. Phenylalanine ammonia-lyase and chalcone synthase genes were found to be significantly more highly expressed in rol B (four to sixfold) and rol C transgenics (3.8-5.5-fold) than the wild-type plant. Flavonoids detected in the wild-type A. annua through HPLC include rutin (0.31 mg/g DW), quercetin (0.01 mg/g DW), isoquercetin (0.107 mg/g DW) and caffeic acid (0.03 mg/g DW). Transgenics of the rol B gene showed up to threefold increase in rutin and caffeic acid, sixfold increase in isoquercetin, and fourfold increase in quercetin. Whereas, in the case of transgenics of rol C gene, threefold increase in rutin and quercetin, 5 fold increase in isoquercetin, and 2.6-fold increase in caffeic acid was followed. Total phenolics and flavonoids content was also found to be increased in rol B (1.5-fold) and rol C (1.4-fold) transgenics as compared to the wild-type plant along with increased free radical scavenging activity. Similarly, the cytotoxic potential of rol gene transgenics against MCF7, HeLA, and HePG2 cancer cell lines was found to be significantly enhanced than the wild-type plant of A. annua. Current findings support the fact that rol genes can alter the secondary metabolism and phytochemical level of the plant. They increased the flavonoids content of A. annua by altering the expression level of flavonoids biosynthetic pathway genes. Increased flavonoid content also enhanced the antioxidant and cytotoxic potential of the plant.

Entities:  

Keywords:  Antioxidants; Artemisia annua; Cytotoxic potential; Flavonoids; Hyb8001r

Mesh:

Substances:

Year:  2016        PMID: 27085357     DOI: 10.1007/s12010-016-2077-9

Source DB:  PubMed          Journal:  Appl Biochem Biotechnol        ISSN: 0273-2289            Impact factor:   2.926


  7 in total

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Journal:  Molecules       Date:  2021-08-11       Impact factor: 4.411

2.  Chloroform Extract of Artemisia annua L. Relaxes Mouse Airway Smooth Muscle.

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Authors:  Mohamed A El-Esawi; Amr Elkelish; Hosam O Elansary; Hayssam M Ali; Mohamed Elshikh; Jacques Witczak; Margaret Ahmad
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4.  Carrot hairy roots: factories for secondary metabolite production.

Authors:  María A Pedreño; Lorena Almagro
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Review 5.  A Systematic Review of Anti-malarial Properties, Immunosuppressive Properties, Anti-inflammatory Properties, and Anti-cancer Properties of Artemisia Annua.

Authors:  Samira Alesaeidi; Sepide Miraj
Journal:  Electron Physician       Date:  2016-10-25

6.  Neuroprotective, antidiabetic and antioxidant effect of Hedera nepalensis and lupeol against STZ + AlCl3 induced rats model.

Authors:  Waleed Javed Hashmi; Hammad Ismail; Furrukh Mehmood; Bushra Mirza
Journal:  Daru       Date:  2018-10-23       Impact factor: 3.117

7.  In vitro and in vivo evaluations of antioxidative, anti-Alzheimer, antidiabetic and anticancer potentials of hydroponically and soil grown Lactuca sativa.

Authors:  Shahid Naseem; Hammad Ismail
Journal:  BMC Complement Med Ther       Date:  2022-01-31
  7 in total

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