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Banana cultivars (Musa ssp.) are diploid, triploid and tetraploid hybrids derived from Musa acuminata and Musa balbisiana. We presented a high-quality draft genome assembly of M. balbisiana with 430 Mb (87%) assembled into 11 chromosomes. We identified that the recent divergence of M. acuminata (...


Zhang, J.Li, J.Xu, Y.Wang, J.Ma, W.Wu, Z.Yu, L.Yang, Y.Liu, C.Guo, Y.Sun, S.Baurens, F.C.Martin, G.Salmon, F.Garsmeur, O.Yahiaoui, N.Hervouet, C.Rouard, M.Laboureau, N.Habas, R.Ricci, S.Peng, M.Guo, A.Xie, J.Li, Y.Ding, Z.Yan, Y.Tie, W.D’Hont, A.Hu, W.Jin, Z.[Musa balbisiana genome reveals subgenome evolution and functional divergence]Musa balbisiana genome reveals subgenome evolution and functional divergence

Droc, GaëtanLariviere, D.Guignon, V.Yahiaoui, N.This, D.Garsmeur, O.Dereeper, A.Hamelin, C.Argout, X.Dufayard, Jean-FrançoisLengelle, J.Baurens, F.C.Cenci, A.Pitollat, B.D'Hont, A.Ruiz, M.Rouard, M.Bocs, S.[The Banana Genome Hub]The Banana Genome Hub

The whole genome sequence of Coffea canephora, the perennial diploid species known as Robusta, has been recently released. In the context of the C. canephora genome sequencing project and to support post-genomics efforts, we developed the Coffee Genome Hub (http://coffee-genome.org/), an integrat...


Dereeper, A.Bocs, S.Rouard, M.Guignon, V.Ravel, S.Tranchant-Dubreuil, C.Poncet, V.Garsmeur, O.Lashermes, P.Droc, Gaëtan[The coffee genome hub: a resource for coffee genomes]The coffee genome hub: a resource for coffee genomes

Edible bananas result from interspecific hybridization between Musa acuminata and Musa balbisiana, as well as among subspecies in M. acuminata. Four particular M. acuminata subspecies have been proposed as the main contributors of edible bananas, all of which radiated in a short period of time in...


Rouard, M.Droc, GaëtanMartin, G.Hueber, Y.Sardos, J.Guignon, V.Cenci, A.Geigle, B.Hibbins, M.Yahiaoui, N.Baurens, F.C.Berry, V.Hahn, M.D’Hont, A.Roux, N.[Three new genome assemblies support a rapid radiation in Musa acuminata (wild banana)]Three new genome assemblies support a rapid radiation in Musa acuminata (wild banana)

GRAS transcription factors (TFs) play critical roles in plant growth and development such as gibberellin and mycorrhizal signaling. Proteins belonging to this gene family contain a typical GRAS domain in the C-terminal sequence, whereas the N-terminal region is highly variable. Although, GRAS gen...


Cenci, A.Rouard, M.[Evolutionary analyses of GRAS transcription factors in angiosperms]Evolutionary analyses of GRAS transcription factors in angiosperms

Fusarium wilt disease, caused by Fusarium oxysporum f. sp. cubense, especially by tropical race 4 (Foc TR4), is threatening the global banana industry. Musa acuminata Pahang, a wild diploid banana that displays strong resistance to Foc TR4, holds great potential to understand the underlying resis...


Zhang, L.Cenci, A.Rouard, M.Zhang, D.Wang, Y.Tang, W.Zheng, S.J.[Transcriptomic analysis of resistant and susceptible banana corms in response to infection by Fusarium oxysporum f. sp. cubense tropical race 4]Transcriptomic analysis of resistant and susceptible banana corms in response to infection by Fusarium oxysporum f. sp. cubense tropical race 4

Banana cultivars are derived from hybridizations involving Musa acuminata subspecies. The latter diverged following geographical isolation in distinct South-east Asian continental regions and islands. Observation of chromosome pairing irregularities in meiosis of hybrids between these subspecies ...


Dupouy, M.Baurens, F.C.Derouault, P.Hervouet, C.Cardi, C.Cruaud, C.Istace, B.Labadie, K.Guiougou, C.Toubi, L.Salmon, F.Mournet, P.Rouard, M.Yahiaoui, N.Lemainque, A.Martin, G.D'Hont, A.[Two large reciprocal translocations characterized in the disease resistance-rich burmannica genetic group of Musa acuminata.]Two large reciprocal translocations characterized in the disease resistance-rich burmannica genetic group of Musa acuminata.

Most banana cultivars are triploid seedless parthenocarpic clones derived from hybridization between Musa acuminata subspecies and sometimes M. balbisiana. M. acuminata subspecies were suggested to differ by a few large chromosomal rearrangements based on chromosome pairing configurations in inte...


Martin, G.Carreel, F.Coriton, O.Hervouet, C.Cardi, C.Derouault, P.Roques, D.Salmon, F.Rouard, M.Sardos, J.Labadie, KarineBaurens, F.C.D’Hont, A.[Evolution of the banana genome (Musa acuminata) is impacted by large chromosomal translocations]Evolution of the banana genome (Musa acuminata) is impacted by large chromosomal translocations

Bananas (Musa spp.) are consumed worldwide as dessert and cooking types. Edible banana varieties are for the most part seedless and sterile and therefore vegetatively propagated. This confers difficulties for breeding approaches against pressing biotic and abiotic threats and for the nutritional ...


Drapal, Margitde Carvalho, E.B.Rouard, M.Amah, D.Sardos, J.Houwe, I. van denBrown, A.Roux, N.Swennen, R.Fraser, Paul D.[Metabolite profiling characterises chemotypes of Musa diploids and triploids at juvenile and preflowering growth stages]Metabolite profiling characterises chemotypes of Musa diploids and triploids at juvenile and preflowering growth stages

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