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Editorial
. 2018 Jul;30(7):1378-1379.
doi: 10.1105/tpc.18.00430. Epub 2018 Jun 5.

Alternative Splicing Plays a Major Role in Plant Response to Cold Temperatures

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Editorial

Alternative Splicing Plays a Major Role in Plant Response to Cold Temperatures

Jenna Gallegos. Plant Cell. 2018 Jul.
No abstract available

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Figures

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Differential expression (DE) and DAS analyses of the Arabidopsis response to low temperature. (A) Expressed genes identified as DE, DAS, or not regulated in response to cold. (B) Overlap of identified DE and DAS genes with known cold response genes. (Reproduced from Calixto et al. [2018], Figure 2.)

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References

    1. Calixto C.P.G., Guo W., James A.B., Tzioutziou N.A., Entizne J.P., Panter P.E., Knight H., Nimmo H.G., Zhang R., Brown J.W.S. (2018). Rapid and dynamic alternative splicing impacts the Arabidopsis cold response transcriptome. Plant Cell 30: 1424–1444. - PMC - PubMed
    1. Knight M.R., Knight H. (2012). Low-temperature perception leading to gene expression and cold tolerance in higher plants. New Phytol. 195: 737–751. - PubMed
    1. Marquez Y., Brown J.W., Simpson C., Barta A., Kalyna M. (2012). Transcriptome survey reveals increased complexity of the alternative splicing landscape in Arabidopsis. Genome Res. 22: 1184–1195. - PMC - PubMed

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