RNA-seq analysis reveals genetic response and tolerance mechanisms to ozone exposure in soybean

Author:

Whaley Adam,Sheridan Jaime,Safari Sajedeh,Burton Amy,Burkey Kent,Schlueter Jessica

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Biotechnology

Reference48 articles.

1. Prather M, Ehhalt D, Dentener F, Derwent R, Dlugokencky E, Holland E, et al. Others: Atmospheric Chemistry and Greenhouse Gases, Climate Change 2001: The Scientific Basis, Contribution of Working Group I to the Third Assessment Report of the Intergovernmental Panel on Climate Change JT Houghton, et Al., 239–287. New York: Cambridge Univ. Press; 2001.

2. U.S. EPA. Air Quality Criteria for Ozone and Related Photochemical Oxidants (2006 Final). Washington, DC: U.S. Environmental Protection Agency; EPA/600/R-05/004aF-cF, 2006.

3. Ainsworth EA, Yendrek CR, Sitch S, Collins WJ, Emberson LD. The effects of tropospheric ozone on net primary productivity and implications for climate change*. Annu Rev Plant Biol. 2012;63:637–61.

4. Mills G, Buse A, Gimeno B, Bermejo V, Holland M, Emberson L, et al. A synthesis of AOT40-based response functions and critical levels of ozone for agricultural and horticultural crops. Atmos Environ. 2007;41:2630–43.

5. Purcell LC, Specht JE. Physiological traits for ameliorating drought stress. In HR Boerma and JE Specht (ed). Soybean: Improvement, production, and uses. Third Edition. Agron. Monogr. 16. ASA, CSSA and SSSA Madison, WI. p. 569–620.

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