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OtherGenomics Article
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Arabidopsis Transcriptome Profiling Indicates That Multiple Regulatory Pathways Are Activated during Cold Acclimation in Addition to the CBF Cold Response Pathway

Sarah Fowler, Michael F. Thomashow
Sarah Fowler
Michigan State University–Department of Energy Plant Research Laboratory and Department of Crop and Soil Sciences, Michigan State University, East Lansing, Michigan 48824-1312
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Michael F. Thomashow
Michigan State University–Department of Energy Plant Research Laboratory and Department of Crop and Soil Sciences, Michigan State University, East Lansing, Michigan 48824-1312
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Published August 2002. DOI: https://doi.org/10.1105/tpc.003483

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Author Information

  1. Sarah Fowler and
  2. Michael F. Thomashow1
  1. Michigan State University–Department of Energy Plant Research Laboratory and Department of Crop and Soil Sciences, Michigan State University, East Lansing, Michigan 48824-1312
  1. ↵1To whom correspondence should be addressed. E-mail thomash6{at}msu.edu; fax 517-353-9168
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Article Information

vol. 14 no. 8 1675-1690
DOI 
https://doi.org/10.1105/tpc.003483
PubMed 
12172015

Published By 
American Society of Plant Biologists
Print ISSN 
1040-4651
Online ISSN 
1532-298X
Published Online 
August 01, 2002

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Arabidopsis Transcriptome Profiling Indicates That Multiple Regulatory Pathways Are Activated during Cold Acclimation in Addition to the CBF Cold Response Pathway
Sarah Fowler, Michael F. Thomashow
The Plant Cell Aug 2002, 14 (8) 1675-1690; DOI: 10.1105/tpc.003483

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Arabidopsis Transcriptome Profiling Indicates That Multiple Regulatory Pathways Are Activated during Cold Acclimation in Addition to the CBF Cold Response Pathway
Sarah Fowler, Michael F. Thomashow
The Plant Cell Aug 2002, 14 (8) 1675-1690; DOI: 10.1105/tpc.003483
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The Plant Cell Online: 14 (8)
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Vol. 14, Issue 8
Aug 2002
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  • Genome-Wide Analysis of NBS-LRR–Encoding Genes in Arabidopsis
  • Laser-Capture Microdissection, a Tool for the Global Analysis of Gene Expression in Specific Plant Cell Types: Identification of Genes Expressed Differentially in Epidermal Cells or Vascular Tissues of Maize
  • A High-Throughput Arabidopsis Reverse Genetics System
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