Transcriptomic analysis reveals genetic factors underlying impaired symbiotic nitrogen fixation in lines derived from crosses between cultivated peanut (Arachis hypogaea L.) and its wild ancestors

被引:0
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作者
Darius Tchoutang Nzepang [1 ]
Maïmouna Cissoko [2 ]
Djamel Gully [3 ]
Valérie Hocher [2 ]
Jean-François Rami [3 ]
Saliou Fall [3 ]
Daniel Fonceka [2 ]
Sergio Svistoonoff [3 ]
机构
[1] Centre d’Etudes Régional Pour L’Amélioration de L’Adaptation À La Sécheresse,
[2] CERAAS-Route de Khombole,undefined
[3] Laboratoire Commun de Microbiologie (LCM) (IRD/ISRA/UCAD),undefined
[4] Centre de Recherche de Bel Air,undefined
[5] PHIM Plant Health Institute,undefined
[6] Univ Montpellier,undefined
[7] IRD,undefined
[8] CIRAD,undefined
[9] INRAE,undefined
[10] Institut Agro,undefined
[11] CIRAD,undefined
[12] UMR AGAP,undefined
[13] AGAP,undefined
[14] Univ Montpellier,undefined
[15] CIRAD,undefined
[16] INRAE,undefined
[17] Institut Agro,undefined
关键词
Groundnut; Biological nitrogen fixation; Rhizobia; Molecular mechanisms; Quantitative genetics; Breeding;
D O I
10.1186/s12864-025-11739-y
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  • [1] Mapping of QTLs Associated with Biological Nitrogen Fixation Traits in Peanuts (Arachis hypogaea L.) Using an Interspecific Population Derived from the Cross between the Cultivated Species and Its Wild Ancestors
    Nzepang, Darius T.
    Gully, Djamel
    Nguepjop, Joel R.
    Zazou, Arlette Zaiya
    Tossim, Hodo-Abalo
    Sambou, Aissatou
    Rami, Jean-Francois
    Hocher, Valerie
    Fall, Saliou
    Svistoonoff, Sergio
    Fonceka, Daniel
    GENES, 2023, 14 (04)