Nitrogen dioxide regulates organ growth by controlling cell proliferation and enlargement in Arabidopsis
- PMID: 24354517
- DOI: 10.1111/nph.12609
Nitrogen dioxide regulates organ growth by controlling cell proliferation and enlargement in Arabidopsis
Abstract
• To gain more insight into the physiological function of nitrogen dioxide (NO₂), we investigated the effects of exogenous NO₂ on growth in Arabidopsis thaliana. • Plants were grown in air without NO₂ for 1 wk after sowing and then grown for 1-4 wk in air with (designated treated plants) or without (control plants) NO₂. Plants were irrigated semiweekly with a nutrient solution containing 19.7 mM nitrate and 10.3 mM ammonium. • Five-week-old plants treated with 50 ppb NO₂ showed a ≤ 2.8-fold increase in biomass relative to controls. Treated plants also showed early flowering. The magnitude of the effects of NO₂ on leaf expansion, cell proliferation and enlargement was greater in developing than in maturing leaves. Leaf areas were 1.3-8.4 times larger on treated plants than corresponding leaves on control plants. The NO₂-induced increase in leaf size was largely attributable to cell proliferation in developing leaves, but was attributable to both cell proliferation and enlargement in maturing leaves. The expression of different sets of genes for cell proliferation and/or enlargement was induced by NO₂, but depended on the leaf developmental stage. • Collectively, these results indicated that NO₂ regulates organ growth by controlling cell proliferation and enlargement.
Keywords: Arabidopsis thaliana; cell enlargement; cell proliferation; early flowering; nitric oxide (NO); nitrogen dioxide (NO2); organ growth.
© 2013 The Authors. New Phytologist © 2013 New Phytologist Trust.
References
-
- Adam SEH, Shigeto J, Sakamoto A, Takahashi M, Morikawa H. 2008. Atmospheric nitrogen dioxide at ambient levels stimulates growth and development of horticultural plants. Botany 86: 213-217.
-
- Anastasiou E, Kenz S, Gerstung M, MacLean D, Timmer J, Fleck C, Lenhard M. 2007. Control of plant organ size by KLUH/CYP78A5-dependent intercellular signaling. Developmental Cell 13: 843-856.
-
- Bigelow DJ. 2009. Nitrotyrosine-modified SERCA2: a cellular sensor of reactive nitrogen species. Pflügers Archiv-European Journal of Physiology 457: 701-710.
-
- Brennan ML, Wu W, Fu X, Shen Z, Song W, Frost H, Vadseth C, Narine L, Lenkiewicz E, Borchers MT et al. 2002. A tale of two controversies: defining both the role of peroxidases in nitrotyrosine formation in vivo using eosinophil peroxidase and myeloperoxidase-deficient mice, and the nature of peroxidase-generated reactive nitrogen species. Journal of Biological Chemistry 277: 17415-17427.
-
- Capron TM, Mansfield TM. 1977. Inhibition of growth in tomato by air polluted with nitrogen oxides. Journal of Experimental Botany 28: 112-116.
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