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Cenci, A.Sardos, J.Hueber, Y.Zorrilla-Fontanesi, J.Wesemael, J. vanSwennen, R.L.Roux, N.Carpentier, S.Rouard, M.[A genomic view of the banana (Musa spp.) diversification: the case of triploid ABB genome group]A genomic view of the banana (Musa spp.) diversification: the case of triploid ABB genome group

Zorrilla-Fontanesi, Y.Kissel, E.Rouard, M.Cenci, A.Roux, N.Swennen, R.L.Carpentier, S.[Identification of drought responsive genes and promoters in Musa by using RNA-seq]Identification of drought responsive genes and promoters in Musa by using RNA-seq

Zorrilla-Fontanesi, Y.Wesemael, J. vanKissel, E.Mduma, H.Uwimana, B.Rouard, M.Cenci, A.Roux, N.Swennen, R.L.Carpentier, S.[Combined phenotypic and transcriptomic approaches to evaluate drought-stress response in banana (Musa spp.), a non-model crop]Combined phenotypic and transcriptomic approaches to evaluate drought-stress response in banana (Musa spp.), a non-model crop

Cenci, A.Zorrilla-Fontanesi, J.Kissel, E.Hueber, Y.Dubois, E.Parrinello, H.Swennen, R.L.Roux, N.Rouard, M.Carpentier, S.[Transcriptomic analysis in banana cultivars during an early stage of drought-stress]Transcriptomic analysis in banana cultivars during an early stage of drought-stress

Drought is a complex phenomenon that is relevant for many crops. Performing high-throughput transcriptomics in non-model crops is challenging. The non-model crop where our workflow has been tested on is banana (Musa spp.), which ranks among the top ten staple foods (total production over 145 mill...


Zorrilla-Fontanesi, Y.Rouard, M.Cenci, A.Kissel, E.Roux, N.Swennen, R.L.Carpentier, S.C.[How do roots respond to osmotic stress? A transcriptomic approach to address this question in a non-model crop]How do roots respond to osmotic stress? A transcriptomic approach to address this question in a non-model crop

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