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Biophysical Limitation of Cell Elongation in Cereal Leaves

机译:谷物叶片细胞伸长的生物物理限制

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摘要

Grass leaves grow from the base. Unlike those of dicotyledonous plants, cells of grass leaves expand enclosed by sheaths of older leaves, where there is little or no transpiration, and go through developmental stages in a strictly linear arrangement. The environmental or developmental factor that limits leaf cell expansion must do so through biophysical means at the cellular level: wall‐yielding, water uptake and solute supply are all candidates. This Botanical Briefing looks at the possibility that tissue hydraulic conductance limits cell expansion and leaf growth. A model is presented that relates pathways of water movement in the elongation zone of grass leaves to driving forces for water movement and to anatomical features. The bundle sheath is considered as a crucial control point. The relative importance of these pathways for the regulation of leaf growth and for the partitioning of water between expansion and transpiration is discussed.
机译:草叶从底部生长。与双子叶植物不同,草叶的细胞被老叶的鞘所包围,而后者几乎没有蒸腾作用,并且以严格的线性排列经历了发育阶段。限制叶细胞膨胀的环境或发育因素必须通过细胞水平上的生物物理手段来实现:壁产量,吸水率和溶质供应都是候选者。该植物简报着眼于组织水力传导限制细胞膨胀和叶片生长的可能性。提出了一种模型,该模型将草叶伸长区中水的运动路径与水运动的驱动力和解剖特征相关联。束鞘被认为是关键的控制点。讨论了这些途径对于调节叶片生长以及在膨胀和蒸腾之间分配水的相对重要性。

著录项

  • 期刊名称 Annals of Botany
  • 作者

    WIELAND FRICKE;

  • 作者单位
  • 年(卷),期 2002(90),2
  • 年度 2002
  • 页码 157–167
  • 总页数 11
  • 原文格式 PDF
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