Treenut Saithong

Affiliations: 
2007-2009 Biological Sciences University of Edinburgh, Edinburgh, Scotland, United Kingdom 
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"Treenut Saithong"
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Thanasomboon R, Kalapanulak S, Netrphan S, et al. (2020) Exploring dynamic protein-protein interactions in cassava through the integrative interactome network. Scientific Reports. 10: 6510
Suksamran R, Saithong T, Thammarongtham C, et al. (2020) Genomic and Transcriptomic Analysis Identified Novel Putative Cassava lncRNAs Involved in Cold and Drought Stress. Genes. 11
Chiewchankaset P, Siriwat W, Suksangpanomrung M, et al. (2019) Understanding carbon utilization routes between high and low starch-producing cultivars of cassava through Flux Balance Analysis. Scientific Reports. 9: 2964
Wirojsirasak W, Kalapanulak S, Saithong T. (2019) Pan- and core- gene association networks: Integrative approaches to understanding biological regulation. Plos One. 14: e0210481
Punyasu N, Kalapanulak S, Saithong T. (2019) Development of a compartmentalized model for insight into the structured metabolic pathway of carbon metabolism in cassava leaves April 2019. 13: 605-615
Siriwat W, Kalapanulak S, Suksangpanomrung M, et al. (2018) Unlocking conserved and diverged metabolic characteristics in cassava carbon assimilation via comparative genomics approach. Scientific Reports. 8: 16593
Thanasomboon R, Kalapanulak S, Netrphan S, et al. (2017) Prediction of cassava protein interactome based on interolog method. Scientific Reports. 7: 17206
Kalapanulak S, Saithong T, Thammarongtham C. (2017) Networking Omic Data to Envisage Systems Biological Regulation. Advances in Biochemical Engineering/Biotechnology. 160: 121-141
Saithong T, Saerue S, Kalapanulak S, et al. (2015) Gene Co-Expression Analysis Inferring the Crosstalk of Ethylene and Gibberellin in Modulating the Transcriptional Acclimation of Cassava Root Growth in Different Seasons. Plos One. 10: e0137602
Sojikul P, Saithong T, Kalapanulak S, et al. (2015) Genome-wide analysis reveals phytohormone action during cassava storage root initiation. Plant Molecular Biology. 88: 531-43
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