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    Grain yield and leaf gas exchange in upland NERICA rice under repeated cycles of water deficit at reproductive growth stage

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    Authors
    Suleiman, S.O.
    Habila, D.G.
    Fofana, M.
    Abolanle, B.M.
    Olatunbosun, A.N.
    Date Issued
    2022-04
    Date Online
    2022-02
    Language
    en
    Type
    Journal Article
    Review status
    Peer Review
    ISI journal
    Accessibility
    Limited Access
    Usage rights
    Copyrighted; all rights reserved
    Metadata
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    Citation
    Suleiman, S.O., Habila, D.G., Fofana, M., Abolanle, B.M. & Olatunbosun, A.N. (2022). Grain yield and leaf gas exchange in upland NERICA rice under repeated cycles of water deficit at reproductive growth stage. Agricultural Water Management, 264: 107507, 1-10.
    Permanent link to cite or share this item: https://hdl.handle.net/10568/126724
    DOI: https://doi.org/10.1016/j.agwat.2022.107507
    Abstract/Description
    New Rice for Africa (NERICA) was reported to have higher exudation and transpiration rates, above ground dry matter at heading than Japanese cultivars. Information on the expression of their gas exchange attributes and water balance under repeated cycles of water deficit at reproductive stage is unknown. This investigation tested the hypothesis that variation in leaf gas exchange and energy attributes of NERICA rice under repeated cycles of water deficit at reproductive stage would affect their performance under field conditions. Repeated cycles of water regimes (irrigation and water deficit) at reproductive stage were imposed on eight NERICA rice (NERICA 1–8) and checks (CG14, WAB56–104 and IR64). Water regimes were assigned to main plots and rice cultivars to sub-plots using randomised complete block design with three replicates. Drought-tolerant NERICA 4 and 7 had significantly higher relative water content, stomatal conductance, leaf photosynthetic rates with the least canopy temperature than others. A converse pattern was observed in the drought-susceptible IR 64. Grain yield of NERICA 4 and 7 was significantly higher than that of IR 64. These results suggested that improved water and energy status observed in NERICA 4 and 7 could have been responsible for its better performance than IR 64.
    CGIAR Impact Areas
    Nutrition, health and food security
    Contributes to SDGs
    SDG 1 - No poverty; SDG 2 - Zero hunger
    AGROVOC Keywords
    drought; rice; africa; stomatal conductance
    Subjects
    FOOD SECURITY; PLANT ECOLOGY
    Countries
    Nigeria
    Regions
    Africa; Western Africa
    Organizations Affiliated to the Authors
    Federal University of Agriculture Abeokuta; Africa Rice Center; International Institute of Tropical Agriculture
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    • IITA Journal Articles [4999]

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