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首页> 外文期刊>Plant Ecology >Strong leaf morphological, anatomical, and physiological responses of a subtropical woody bamboo (Sinarundinaria nitida) to contrasting light environments.
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Strong leaf morphological, anatomical, and physiological responses of a subtropical woody bamboo (Sinarundinaria nitida) to contrasting light environments.

机译:亚热带木本竹(Sinarundinaria nitida)对对比光环境的强烈叶片形态,解剖学和生理响应。

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Dwarf bamboos are an important understory component of the lowland and montane forests in the subtropical regions of Asia and South America, yet little is known about their physiology and phenotypic plasticity in response to changing light environments. To understand how bamboo species adapt to different light intensities, we examined leaf morphological, anatomical, and physiological differentiation of Sinarundinaria nitida (Mitford) Nakai, a subtropical woody dwarf bamboo, growing in open and shaded natural habitats in the Ailao Mountains, SW China. Compared with leaves in open areas, leaves in shaded areas had higher values in leaf size, specific leaf area, leaf nitrogen, and chlorophyll concentrations per unit area but lower values in leaf thickness, vein density, stomatal density, leaf carbon concentration, and total soluble sugar concentration. However, stomatal size and leaf phosphorus concentration per unit mass remained relatively constant regardless of light regime. Leaves in the open habitat exhibited a higher light-saturated net photosynthetic rate, dark respiration rate, non-photochemical quenching, and electron transport rate than those in the shaded habitat. The results of this study revealed that the bamboo species exhibited a high plasticity of its leaf structural and functional traits in response to different irradiances. The combination of high plasticity in leaf morphological, anatomical, and physiological traits allows this bamboo species to grow in heterogeneous habitats.
机译:矮竹是亚洲和南美洲亚热带地区低地和山地森林的重要林下成分,但对它们的生理学和表型可塑性响应变化的光照环境知之甚少。为了了解竹种如何适应不同的光照强度,我们研究了亚热带木本矮矮竹Sinarundinaria nitida(Mitford)Nakai(生长在中国西南哀牢山的开阔阴凉自然栖息地中)的叶片形态,解剖学和生理分化。与开放区域的叶子相比,阴影区域的叶子具有更大的叶子大小,特定叶子面积,叶子氮和每单位面积叶绿素浓度值,但叶子厚度,静脉密度,气孔密度,叶子碳浓度和总碳含量值较低可溶性糖浓度。但是,无论光照如何,气孔大小和每单位质量的叶磷浓度都保持相对恒定。在空旷的生境中,其叶片的光饱和净光合速​​率,暗呼吸速率,非光化学猝灭和电子传输速率均高于阴凉的生境。这项研究的结果表明,响应不同的辐照,竹种的叶片结构和功能性状表现出很高的可塑性。叶片形态,解剖学和生理性状的高可塑性相结合使该竹种能够在异质生境中生长。

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