Aluminum-Induced Changes on DNA Damage, DNA Methylation and LTR Retrotransposon Polymorphism in Maize

Author:

Taspinar Mahmut Sinan,Aydin Murat,Sigmaz Burcu,Yagci Semra,Arslan Esra,Agar Guleray

Funder

Atatürk Üniversitesi

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference38 articles.

1. Nogueirol, R.C.; Monteiro, F.A.; Gratao, P.L.; Borgo, L.; Azevedo, R.A.: Tropical soils with high aluminum concentrations cause oxidative stress in two tomato genotypes. Environ. Monit. Assess. 187(73), 1–16 (2015)

2. Shah, T.R.; Prasad, K.; Kumar, P.: Maize—a potential source of human nutrition and health: a review. Cogent Food Agric. 2, 1166995 (2016)

3. Kimatu, J.N.; Diarso, M.; Song, J.; Agboola, R.S.; Pang, J.; Qi, X.; Liu, B.: DNA cytosine methylation alterations associated with aluminium toxicity and low pH in Sorghum bicolor. Afr. J. Agric. Res. 6, 4579–4593 (2011)

4. Achary, V.M.M.; Panda, B.B.: Aluminium-induced DNA damage and adaptive response to genotoxic stress in plant cells are mediated through reactive oxygen intermediates. Mutagenesis 25, 201–209 (2010)

5. Meriga, B.; Reddy, B.K.; Rao, K.R.; Reddy, L.A.; Kishor, P.B.: Aluminum-induced production of oxygen radicals, lipid peroxidation and DNA damage in seedlings of rice (Oryza sativa). J. Plant Physiol. 161, 63–68 (2004)

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