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首页> 外文期刊>Ecoscience >Microphysical environmental factors affecting the local distribution of dwarf bamboo (Sasa palmata) in a cool-temperate deciduous broadleaf forest in Japan
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Microphysical environmental factors affecting the local distribution of dwarf bamboo (Sasa palmata) in a cool-temperate deciduous broadleaf forest in Japan

机译:影响日本冷温落叶阔叶林矮竹(Sasa palmata)局部分布的微观物理环境因素

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摘要

Dwarf bamboos are major understory plants in subalpine and temperate forests of Japan. Several microphysical factors are known to influence their coarse-scale distribution, including slope angle, convexity, and proportion of gravel on the soil surface (hereafter gravel cover), but the effects of these factors on local variations in distribution are unclear. To elucidate these effects we examined relationships between local variations in Sasa palmata distribution and the 3 mentioned microphysical environmental factors within a 20- x 20-m plot divided into 0.5- x 0.5-m quadrats in a cool-temperate deciduous broadleaf forest, applying intrinsic conditional autoregressive models at 3 spatial resolutions (0.5 x 0.5 m, 1.0 x 1.0 m, and 2.0 x 2.0 m). The models show that the 3 microphysical factors, known to affect the distribution of S. palmata at coarser scales, also affect its distribution at fine scales. Slope angle and gravel cover had negative effects, while convexity had positive effects on its abundance. However, the strength of their effects depended on the spatial resolution: convexity had the strongest effects at 2-m scale, while slope angle and gravel cover had stronger effects at the finer scales. These findings provide indications of scale-dependent effects of environmental factors that may contribute both to fundamental understanding of forest dynamics and to efforts to enhance the regeneration and conservation of target species.
机译:矮竹是日本亚高山和温带森林的主要林下植物。已知几种微物理因素会影响它们的粗尺度分布,包括坡度角,凸度和砾石在土壤表面(以下称为砾石覆盖)的比例,但是这些因素对分布的局部变化的影响尚不清楚。为了阐明这些影响,我们研究了在凉爽的落叶阔叶林中,将20毫米x 20微米的地块分成0.5毫米x 0.5微米的四方类,研究了Sasa palmata分布的局部变化与3个提到的微物理环境因素之间的关系。 3种空间分辨率(0.5 x 0.5 m,1.0 x 1.0 m和2.0 x 2.0 m)的条件自回归模型。该模型显示,已知在较粗尺度上影响棕榈链球菌分布的3个微物理因素,也在细尺度上影响其分布。坡度和砾石覆盖度有负面影响,而凸度对其丰度有正面影响。但是,它们的作用强度取决于空间分辨率:在2 m尺度上,凸度影响最强,而在较小尺度上,坡度角和砾石覆盖作用更强。这些发现提供了环境因素与规模有关的影响的指示,这些影响可能有助于对森林动力学的基本了解,也有助于加强目标物种的再生和保护。

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