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Njukwe, E.Ekesa, B.Ocimati, W.Blomme, GuyKamira, M.Amah, D.Swennen, R.L.Okafor, C.Ndayisaba, P.C.[Intensification and diversification of banana production systems: key drivers for increased income and food and nutritional security in the Great Lakes region]Intensification and diversification of banana production systems: key drivers for increased income and food and nutritional security in the Great Lakes region

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

In Ethiopia, nearly 20 million people depend on Enset (Ensete ventricosum (Welw.) Cheessman) for food, animal feed and fibre. Most of its cultivation is concentrated in the South and South-Western parts of the country. Enset based farming system is common in the Gamo highlands, with 11, 150 ha cu...


Sabura, S.Swennen, R.L.Deckers, J.Aerts, R.Weldeyes, F.Abebe, G.Hailemichael, A.Weldesenbet, F.Blomme, GuyVancampenhout, K.[Agro-ecological niche of bacterial wilt (Xanthomonas campestris pv. musacearum) of enset (Ensete ventricosum (Welw.) Cheessman) in Gamo highlands of Ethiopia]Agro-ecological niche of bacterial wilt (Xanthomonas campestris pv. musacearum) of enset (Ensete ventricosum (Welw.) Cheessman) in Gamo highlands of Ethiopia

Wesemael, J. vanHueber, Y.Kissel, E.Campos, N.Swennen, R.L.Carpentier, S.[Quantification and identification of allele specific proteins for polyploidnon-model crops: Proof of principle for 3 banana genotypes/phenotypes]Quantification and identification of allele specific proteins for polyploidnon-model crops: Proof of principle for 3 banana genotypes/phenotypes
Asten, Piet J.A. vanLorenzen, J.H.Swennen, R.L.Fermont, A.Taulya, G.Hearne, S.Felde, A. zumKnops, A.Declerck, T.Collard, F.Carpentier, S.[Drought stress in EAH bananas]Drought stress in EAH bananas

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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