Selenium tolerance in Astragalus chrysochlorus: identification of a cDNA fragment encoding a putative Selenocysteine methyltransferase
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Agronomy and Crop Science,Physiology
Link
http://link.springer.com/content/pdf/10.1007/s11738-010-0500-3.pdf
Reference58 articles.
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2. Beck MA, Levande OA, Handy J (2003) Selenium deficiency and viral ınfection. J Nutr 133:1463–1467
3. Berken A, Mulholland MM, LeDuc DL, Terry N (2002) Genetic engineering of plants to enhance selenium phytoremediation. Crit Rev Plant Sci 21:567–582
4. Bertani G (1951) Studies on lysogenesis. I. The mode of phage liberation by lysogenic Escherichia coli. J Bacteriol 62:293–300
5. Birringer M, Pilawa S, Flohe L (2002) Trends in selenium biochemistry. Nat Prod Rep 19:693–718
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1. Characterization of a selenium-resistance-enhancing homocysteine S-methyltransferase from Aegilops tauschii;Cereal Research Communications;2018-06
2. Molecular cloning and biotic elicitation response of phenylalanine ammonia-lyase gene of Astragalus chrysochlorus;Cellular and Molecular Biology;2018-04-30
3. Selenium induced selenocysteine methyltransferase gene expression and antioxidant enzyme activities in Astragalus chrysochlorus;Acta Botanica Croatica;2016-03-01
4. De Novo Transcriptome Assembly and Comparative Analysis Elucidate Complicated Mechanism Regulating Astragalus chrysochlorus Response to Selenium Stimuli;PLOS ONE;2015-10-02
5. Small RNA and degradome sequencing reveals important microRNA function inAstragalus chrysochlorusresponse to selenium stimuli;Plant Biotechnology Journal;2015-05-21
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