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      Thigmomorphogenesis and biomechanical responses of shade-grown Serianthes nelsonii plants to stem flexure

      research-article
      Plant Signaling & Behavior
      Taylor & Francis
      Allocation, biomechanics, endangered species, mechanical stimulation

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          ABSTRACT

          The influences of stem flexure on shade-grown Serianthes nelsonii Merr. stem growth and strength were determined in a container nursery setting. Treated stems were bent 90° two times daily for a 14 wk nursery production period. Plant height, internode length, and slenderness were decreased by stem flexure when compared with control plants that received no flexure. Two force-displacement tests revealed stem strength was increased by the flexure treatment. Control plants exhibited undesirable lean of the main stem, and 1 hr of wind stress further increased the angle of lean. Treated plants were close to orthotropic and the wind stress did not change the stem lean. Results indicate stem flexure is a reliable method for increasing the quality of shade-grown S. nelsonii plants and some form of mechanical stimulation should be added to nursery production protocols for the species.

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          Author and article information

          Journal
          Plant Signal Behav
          Plant Signal Behav
          KPSB
          kpsb20
          Plant Signaling & Behavior
          Taylor & Francis
          1559-2316
          1559-2324
          2019
          15 April 2019
          : 14
          : 7
          : 1601953
          Affiliations
          Western Pacific Tropical Research Center, University of Guam, UOG Station , Mangilao, USA
          Author notes
          CONTACT Thomas E. Marler thomas.marler@ 123456gmail.com Western Pacific Tropical Research Center, University of Guam, UOG Station , Mangilao, Guam 96923, USA
          Author information
          http://orcid.org/0000-0002-7348-2632
          Article
          PMC6619927 PMC6619927 6619927 1601953
          10.1080/15592324.2019.1601953
          6619927
          30985234
          d5977a7c-b9ce-472a-8e29-a76b46f3b727
          © 2019 Taylor & Francis Group, LLC
          History
          : 17 March 2019
          : 1 April 2019
          : 26 March 2019
          Page count
          Figures: 3, Tables: 1, References: 29, Pages: 4
          Categories
          Short Communication

          Allocation,endangered species,mechanical stimulation,biomechanics

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