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      Monopodial and sympodial branching architecture in cotton is differentially regulated by the Gossypium hirsutum SINGLE FLOWER TRUSS and SELF-PRUNING orthologs.

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          Abstract

          Domestication of upland cotton (Gossypium hirsutum) converted it from a lanky photoperiodic perennial to a day-neutral annual row-crop. Residual perennial traits, however, complicate irrigation and crop management, and more determinate architectures are desired. Cotton simultaneously maintains robust monopodial indeterminate shoots and sympodial determinate shoots. We questioned if and how the FLOWERING LOCUS T/SINGLE FLOWER TRUSS (SFT)-like and TERMINAL FLOWER1/SELF-PRUNING (SP)-like genes control the balance of monopodial and sympodial growth in a woody perennial with complex growth habit. Virus-based manipulation of GhSP and GhSFT expression enabled unprecedented functional analysis of cotton development. GhSP maintains growth in all apices; in its absence, both monopodial and sympodial branch systems terminate precociously. GhSFT encodes a florigenic signal stimulating rapid onset of sympodial branching and flowering in side shoots of wild photoperiodic and modern day-neutral accessions. High florigen concentrations did not alter monopodial apices, implying that once a cotton apex is SP-determined, it cannot be reset by florigen. GhSP is also essential to establish and maintain cambial activity. Dynamic changes in GhSFT and GhSP levels navigate meristems between monopodial and sympodial programs in a single plant. SFT and SP influenced cotton domestication and are ideal targets for further agricultural optimization.

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          Author and article information

          Journal
          New Phytol.
          The New phytologist
          Wiley-Blackwell
          1469-8137
          0028-646X
          Oct 2016
          : 212
          : 1
          Affiliations
          [1 ] Department of Biological Sciences, University of North Texas, 1155 Union Circle 305220, Denton, TX, 76203-5017, USA.
          [2 ] Plant Sciences, Weizmann Institute of Science, Rehovot, 7610001, Israel.
          [3 ] Department of Biology, Technion - Israel Institute of Technology, Haifa, 3200003, Israel.
          Article
          10.1111/nph.14037
          27292411
          1ea1b700-3b35-4ad8-9caa-f6390e80c2fe
          History

          architecture,branching pattern,development,domestication,flowering,phosphatidylethanolamine binding protein (PEBP),photoperiodism,signaling

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