In recent years the scientific community has been heavily engaged in studying the grapevine response to climate change. Final goal is the identification of key genetic traits to be used in grapevine breeding and the setting of agronomic practices to improve climatic resilience. The increasing availability of transcriptomic studies, describing gene expression in many tissues and developmental, or treatment conditions, have allowed the implementation of gene expression compendia, which enclose a huge amount of information. The mining of transcriptomic data represents an effective approach to expand a known local gene network (LGN) by finding new related genes. We recently published a pipeline based on the iterative application of the PC-algorithm, named NES2RA, to expand gene networks in Escherichia coli and Arabidopsis thaliana. Here, we propose the application of this method to the grapevine transcriptomic compendium Vespucci, in order to expand four LGNs related to the grapevine response to climate change. Two networks are related to the secondary metabolic pathways for anthocyanin and stilbenoid synthesis, involved in the response to solar radiation, whereas the other two are signaling networks, related to the hormones abscisic acid and ethylene, possibly involved in the regulation of cell water balance and cuticle transpiration. The expansion networks produced by NES2RA algorithm have been evaluated by comparison with experimental data and biological knowledge on the identified genes showing fairly good consistency of the results. In addition, the algorithm was effective in retaining only the most significant interactions among the genes providing a useful framework for experimental validation. The application of the NES2RA to Vitis vinifera expression data by means of the BOINC-based implementation is available upon request (valter.cavecchia@cnr.it)

Malacarne, G.; Pilati, S.; Valentini, S.; Asnicar, F.; Moretto, M.; Sonego, P.; Masera, L.; Cavecchia, V.; Blanzieri, E.; Moser, C. (2018). Discovering causal relationships in grapevine expression data to expand gene networks: a case study: four networks related to climate change. FRONTIERS IN PLANT SCIENCE, 9: 1385. doi: 10.3389/fpls.2018.01385 handle: http://hdl.handle.net/10449/46249

Discovering causal relationships in grapevine expression data to expand gene networks: a case study: four networks related to climate change

Malacarne, G.
Primo
;
Pilati, S.;Moretto, M.;Sonego, P.;Moser, C.
Ultimo
2018-01-01

Abstract

In recent years the scientific community has been heavily engaged in studying the grapevine response to climate change. Final goal is the identification of key genetic traits to be used in grapevine breeding and the setting of agronomic practices to improve climatic resilience. The increasing availability of transcriptomic studies, describing gene expression in many tissues and developmental, or treatment conditions, have allowed the implementation of gene expression compendia, which enclose a huge amount of information. The mining of transcriptomic data represents an effective approach to expand a known local gene network (LGN) by finding new related genes. We recently published a pipeline based on the iterative application of the PC-algorithm, named NES2RA, to expand gene networks in Escherichia coli and Arabidopsis thaliana. Here, we propose the application of this method to the grapevine transcriptomic compendium Vespucci, in order to expand four LGNs related to the grapevine response to climate change. Two networks are related to the secondary metabolic pathways for anthocyanin and stilbenoid synthesis, involved in the response to solar radiation, whereas the other two are signaling networks, related to the hormones abscisic acid and ethylene, possibly involved in the regulation of cell water balance and cuticle transpiration. The expansion networks produced by NES2RA algorithm have been evaluated by comparison with experimental data and biological knowledge on the identified genes showing fairly good consistency of the results. In addition, the algorithm was effective in retaining only the most significant interactions among the genes providing a useful framework for experimental validation. The application of the NES2RA to Vitis vinifera expression data by means of the BOINC-based implementation is available upon request (valter.cavecchia@cnr.it)
Gene network
NES2RA
Vitis vinifera
Climate change
abscisic acid ABA
Flavonoids
Stilbenoids
ERF
Settore INF/01 - INFORMATICA
2018
Malacarne, G.; Pilati, S.; Valentini, S.; Asnicar, F.; Moretto, M.; Sonego, P.; Masera, L.; Cavecchia, V.; Blanzieri, E.; Moser, C. (2018). Discovering causal relationships in grapevine expression data to expand gene networks: a case study: four networks related to climate change. FRONTIERS IN PLANT SCIENCE, 9: 1385. doi: 10.3389/fpls.2018.01385 handle: http://hdl.handle.net/10449/46249
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