...
首页> 外文期刊>Forests >Leaf Physiological and Morphological Responses to Shade in Grass-Stage Seedlings and Young Trees of Longleaf Pine
【24h】

Leaf Physiological and Morphological Responses to Shade in Grass-Stage Seedlings and Young Trees of Longleaf Pine

机译:长叶松树期幼苗和幼树叶片对叶片的生理形态形态响应

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Longleaf pine has been classified as very shade intolerant but leaf physiological plasticity to light is not well understood, especially given longleaf pine’s persistent seedling grass stage. We examined leaf morphological and physiological responses to light in one-year-old grass-stage seedlings and young trees ranging in height from 4.6 m to 6.3 m to test the hypothesis that young longleaf pine would demonstrate leaf phenotypic plasticity to light environment. Seedlings were grown in a greenhouse under ambient levels of photosynthetically active radiation (PAR) or a 50% reduction in ambient PAR and whole branches of trees were shaded to provide a 50% reduction in ambient PAR. In seedlings, shading reduced leaf mass per unit area (LMA), the light compensation point, and leaf dark respiration (RD), and increased the ratio of light-saturated photosynthesis to RD and chlorophyll b and total chlorophyll expressed per unit leaf dry weight. In trees, shading reduced LMA, increased chlorophyll a, chlorophyll b and total chlorophyll on a leaf dry weight basis, and increased allocation of total foliar nitrogen to chlorophyll nitrogen. Changes in leaf morphological and physiological traits indicate a degree of shade tolerance that may have implications for even and uneven-aged management of longleaf pine.
机译:长叶松树被归类为非常不耐荫,但人们对叶子对光的生理可塑性了解不多,特别是考虑到长叶松树的幼苗期持续不断。我们检查了一年生的草阶段幼苗和高度从4.6 m至6.3 m的幼树对光的叶片形态和生理响应,以检验假说长叶松树将表现出叶片对光环境的表型可塑性。在环境水平的光合作用辐射(PAR)或环境PAR降低50%的情况下,将温室中的幼苗生长,并在树的整个分支上加阴影以使环境PAR降低50%。在幼苗中,遮荫减少了单位面积的叶片质量(LMA),光补偿点和叶片暗呼吸(R D ),并增加了光饱和光合作用与R D的比率和叶绿素b以及单位叶干重表示的总叶绿素。在树木中,遮荫降低了LMA,增加了以叶干重为基础的叶绿素a,叶绿素b和总叶绿素,并增加了总叶面氮对叶绿素氮的分配。叶片形态和生理特征的变化表明一定程度的耐荫性,可能对长叶松树的均匀和不均匀老化管理产生影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号