Evaluation of selenium biofortification strategies in Phaseolus vulgaris through selenocysteine methyltransferase gene expression

Author:

Patel Priyanka,Trivedi Goral,Saraf MeenuORCID

Funder

Gujarat State Biotechnology Mission

Publisher

Springer Science and Business Media LLC

Reference40 articles.

1. Acuna JJ, Jorquera MA, Barra PJ, Crowley DE, Mora ML (2013) Selenobacteria selected from the rhizosphere as a potential tool for Se biofortification of wheat crops. Biol Fertil Soils 49(2):175–185

2. Avendano R, Chaves N, Fuentes P, Sanchez E, Jimenez JI, Chavarria M (2016) Production of selenium nanoparticles in Pseudomonas putida KT2440. Sci Rep 6:1–9

3. Bhatia P, Pandey S, Prakash R, Nagaraja TP (2014) Enhanced anti-oxidant activity as a function of selenium hyperaccumulation in Agaricus bisporus cultivated on se-rich agri-residues. J Biol Act Prod Nat 4(5–6):354–364

4. Cakir O, Turgut-kara N, Ari S (2012) Selenium metabolism in plants: molecular approaches. In: Montanaro G (ed) Advances in selected plant physiology aspects, pp 209–232

5. Cakir O, Turgut-kara N, Ari S (2016) Selenium induced selenocysteine methyltransferase gene expression and antioxidant enzyme activities in Astragalus chrysochlorus. Acta Bot Croat 75(1):11–16

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