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High-throughput molecular analysis is challenging in a non-model species. Proteomics has a great potential to characterize non-model species. We went beyond the level of simply ‘identifying’ the proteins of interest during osmotic stress experiments in an allopolyploid crop (in casu banana) and f...


Vanhove, A.C.Vermaelen, W.Swennen, R.L.Carpentier, S.[A look behind the screens: Characterization of the HSP70 family during osmotic stress in a non-model crop]A look behind the screens: Characterization of the HSP70 family during osmotic stress in a non-model crop

Vanhove, A.C.Vermaelen, W.Panis, B.Swennen, R.Carpentier, S.C.[Screening the banana biodiversity for drought tolerance: can an in vitro growth model and proteomics be used as a tool to discover tolerant varieties and understand homeostasis]Screening the banana biodiversity for drought tolerance: can an in vitro growth model and proteomics be used as a tool to discover tolerant varieties and understand homeostasis

Data is presented from an in-depth analysis of the HSP70 family in the non-model banana during osmotic stress [1]. First, a manual curation of HSP70 sequences from the banana genome was performed and updated on the Musa hub http://banana-genome.cirad.fr/. These curated protein sequences were then...


Vanhove, A.C.Vermaelen, W.Cenci, A.Swennen, R.L.Carpentier, S.C.[Data for the characterization of the HSP70 family during osmotic stress in banana, a non-model crop.]Data for the characterization of the HSP70 family during osmotic stress in banana, a non-model crop.

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