Why excess boron becomes toxic?: closing in on the molecular mechanism of boron toxicity
Author:
Affiliation:
1. 2641 Yamazaki, Noda, Chiba 278-8510 Japan
Publisher
The Japanese Society of Plant Morphology
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/plmorphol/31/1/31_53/_pdf
Reference32 articles.
1. Aquea, F., Federici, F., Moscoso, C., Vega, A., Jullian, P., Haseloff, J., and Arce-Johnson, P. (2012) A molecular framework for the inhibition of Arabidopsis root growth in response to boron toxicity. Plant Cell Environ 35: 719-734.
2. Bolaños, L., Lukaszewski, K., Bonilla, I., and Blevins, D. (2004) Why boron? Plant Physiol Biochem 42: 907-912.
3. Camacho - Cristóbal, J. J., Rexach, J., and González - Fontes, A. (2008) Boron in plants: deficiency and toxicity. J Integr Plant Biol 50: 1247-1255.
4. Desvoyes, B., Sanchez, M. P., Ramirez-Parra, E., and Gutierrez, C. (2010) Impact of nucleosome dynamics and histone modifications on cell proliferation during Arabidopsis development. Heredity 105: 80-91.
5. Dhalluin, C., Carlson, J. E., Zeng, L., He, C., Aggarwal, A. K., and Zhou, M. M. (1999) Structure and ligand of a histone acetyltransferase bromodomain. Nature 399: 491-496.
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