1Present address: Department of Plant and Wildlife Sciences, Brigham Young University, Provo, UT 84602, USA.
Accentuation of phosphorus limitation in Geranium dissectum by nitrogen: an ecological genomics study
Version of Record online: 9 APR 2008
© 2008 The Authors. Journal compilation © 2008 Blackwell Publishing Ltd
Global Change Biology
Volume 14, Issue 8, pages 1877–1890, August 2008
How to Cite
THAYER, S. S., ST CLAIR, S. B., FIELD, C. B. and SOMERVILLE, S. C. (2008), Accentuation of phosphorus limitation in Geranium dissectum by nitrogen: an ecological genomics study. Global Change Biology, 14: 1877–1890. doi: 10.1111/j.1365-2486.2008.01618.x
- Issue online: 8 JUL 2008
- Version of Record online: 9 APR 2008
- Received 21 September 2007; revised version received 21 April 2008 and accepted 28 November 2007
Table S1. All genes tested by direct hypothesis.
Table S2. Genes selected as differentially expressed under one or more treatment combinations following testing by anova and the Benjamini and Hochberg MTC (P?0.05).
Table S3. Number of G. dissectum genes (ESTs) found to be differentially expressed in response to the four global change factors, CO2, temperature, rainfall and nitrogen, and their interactions.
Table S4. Genes whose expression responds to elevated nitrogen deposition but are not directly discussed in the text.
Fig. S1. SAS code for the proc mixed anova as used to analyze gene expression data.
Supplemental text. Validation of microarray experiments. Includes:
Table 1V. Sequence of primers used to amplify genes from G. dissectum genomic DNA or mRNA.
Table 2V. Sequences of G. dissectum DNA sequences and their sequence identity to Arabidopsis genes.
Fig. 1V. Southern blot of Geranium dissectum genomic DNA probed with a fragment of the G. dissectum SPX-domain gene.
Fig. 2V. Southern blot of G. dissectum genomic DNA probed with a fragment of the G. dissectum PRK gene.
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