...
首页> 外文期刊>Trees. Structure and Function >Growth-unit structure in trees: effects of branch category and position on Nothofagus nervosa, N. obliqua and their hybrids (Nothofagaceae)
【24h】

Growth-unit structure in trees: effects of branch category and position on Nothofagus nervosa, N. obliqua and their hybrids (Nothofagaceae)

机译:树木中的生长单位结构:分支类别和位置对Nothofagus nervosa,N。obliqua及其杂种(Nothofagaceae)的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

In plants with rhythmic growth, a branch segment extended in one event is known as growth unit (GU). GU structure, resulting from the resources allocated to stem length, volume and mass, and to leaf area and mass, is relevant for understanding branch functioning in the context of plant development. This study compares GU structure between main branches and short branches positioned at low and high positions on nursery-grown trees of three closely related genetic entities: Nothofagus nervosa, N. obliqua and natural hybrids between these species. GUs of short branches, compared to those of main branches, had lower length, diameter and number of leaves, and higher specific leaf area (SLA), stem density and proportional mass in leaves than in stems. GUs at high position on the trees had a higher proportion of their mass in stem than in leaves and a lower SLA than those at low position. Stem density was higher for N. nervosa and the hybrid trees than for N. obliqua. Most other GU traits did not differ statistically between the considered genetic entities. The three genetic entities exhibited distinct patterns of variation in leaf size with leaf position along main-branch GUs. The individual tree had a significant effect on most variables. GU structure would have a major ontogenetic component and would play a relevant role in the architecture of Nothofagus species and their adaptation to different environmental conditions.
机译:在具有节律性生长的植物中,在一个事件中延伸的分支片段称为生长单位(GU)。 GU结构由分配给茎长度,体积和质量以及叶面积和质量的资源产生,对于理解植物发育中的分支功能至关重要。这项研究比较了三个密切相关的遗传实体:Nothofagus nervosa,N。obliqua和这些物种之间的自然杂交体的苗圃树上的主要树枝和短枝的低和高位置处的GU结构。与主枝相比,短枝的GUs的长度,直径和叶片数更少,并且叶片的比叶面积(SLA),茎密度和比例质量更高。在树上较高位置的GU在茎中的质量比例要比在树叶中高,并且其SLA比低位置的低。神经猪笼草和杂种树的茎密度高于斜叶猪笼草。在考虑的遗传实体之间,大多数其他GU性状在统计学上没有差异。这三个遗传实体在主分支GUs上的叶大小和叶位置表现出不同的叶型变化模式。单个树对大多数变量具有显着影响。 GU结构将具有主要的个体发育成分,并将在Nothofagus物种的结构及其对不同环境条件的适应性中发挥重要作用。

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