Natural variation of C-repeat-binding factor (CBFs) genes is a major cause of divergence in freezing tolerance among a group of Arabidopsis thaliana populations along the Yangtze River in China
Article first published online: 31 MAY 2013
© 2013 The Authors. New Phytologist © 2013 New Phytologist Trust
Volume 199, Issue 4, pages 1069–1080, September 2013
How to Cite
Kang, J., Zhang, H., Sun, T., Shi, Y., Wang, J., Zhang, B., Wang, Z., Zhou, Y. and Gu, H. (2013), Natural variation of C-repeat-binding factor (CBFs) genes is a major cause of divergence in freezing tolerance among a group of Arabidopsis thaliana populations along the Yangtze River in China. New Phytologist, 199: 1069–1080. doi: 10.1111/nph.12335
- Issue published online: 2 AUG 2013
- Article first published online: 31 MAY 2013
- Manuscript Accepted: 18 APR 2013
- Manuscript Received: 8 MAR 2013
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Fig. S1 The sequence polymorphism and gene architecture of AtGolS3 in four natural populations along the Yangtze River and the Col ecotype of Arabidopsis thaliana.
Fig. S2 The promoter architecture of CBF3 and five variation patterns of CBF3 promoter and the related fragment on chromosome 5 in natural populations/accessions of Arabidopsis thaliana from around the world.
|nph12335-sup-0002-TableS1.doc||Word document||115K||Table S1 Fifty-seven natural populations/accessions of Arabidopsis thaliana and variation in the promoter of CBF3 and relevant fragments on chromosome 5|
Table S2 Primers for amplifying CBFs and its downstream genes in four natural populations and the Col ecotype of Arabidopsis thaliana
Table S3 Fifty-eight indel Markers used in QTL mapping for identifying loci involving in differential expression of AtGolS3 in four natural populations of Arabidopsis thaliana
Table S4 Reported cold-responding genes in Arabidopsis thaliana and the relative level of their expression in four natural populations and the Col ecotype
|nph12335-sup-0004-TableS5.doc||Word document||30K||Table S5 Statistical test of the differences of the effect of cold acclimation among four natural populations and the Col ecotype of Arabidopsis thaliana|