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Showing 1 to 3 of 3 for “"Panicle Architecture"”.

  1. QTL Mapping of Panicle Architecture and Yield-Related Traits Between Two U.S. Rice Cultivars 'LaGrue' and 'Lemont'

    … of multiple yield components such as number of panicles/plant, number of tillers/plant, and number of seeds/panicle. Panicle architecture is an important yield trait yield as the number of seeds on a panicle greatly contributes to the overall panicle yield. A QTL analysis and mapping study on …

    arkansas Repository record for QTL Mapping of Panicle Architecture and Yield-Related Traits Between Two U.S. Rice Cultivars 'LaGrue' and 'Lemont' (opens in a new tab)

  2. DEFINING THE FUNCTION OF RICE FLORIGENIC PROTEINS DURING THE REPRODUCTIVE TRANSITION AND INFLORESCENCE DEVELOPMENT

    … Extending the indeterminate stage results in panicles with more branches and seeds. The PEBP genes that encode for florigen-like FT-L1 and anti-florigens RCN1-4, influence this mechanism. While the antagonistic relationship between florigens Hd3a and RFT1 and anti-florigens RCN1-4 in flowering …

    milano Repository record for DEFINING THE FUNCTION OF RICE FLORIGENIC PROTEINS DURING THE REPRODUCTIVE TRANSITION AND INFLORESCENCE DEVELOPMENT (opens in a new tab)

  3. REGULATING CYTOKININ METABOLISM DURING INFLORESCENCE MERISTEM DEVELOPMENT TO PROMOTE HIGHER RICE PRODUCTIVITY THROUGH CHANGES ON PLANT ARCHITECTURE

    … primarily by three components: the number of panicles, the number of grains per panicle, and grain weight. The cytokinin group of phytohormones positively regulates plant yield through the simultaneous regulation of source capacity (leaf senescence) and sink strength (grain number and size). …

    milano Repository record for REGULATING CYTOKININ METABOLISM DURING INFLORESCENCE MERISTEM DEVELOPMENT TO PROMOTE HIGHER RICE PRODUCTIVITY THROUGH CHANGES ON PLANT ARCHITECTURE (opens in a new tab)