首页> 外文期刊>Journal of Bryology >Indirect effects of hiking trails on the community structure and diversity of trunk-epiphytic bryophytes in an old-growth fir forest.
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Indirect effects of hiking trails on the community structure and diversity of trunk-epiphytic bryophytes in an old-growth fir forest.

机译:远足径对老杉木林中树干附生苔藓植物群落结构和多样性的间接影响。

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Forest hiking trails may influence local microclimate and biodiversity, but the effects on community structure and diversity of epiphytic bryophytes on trees are currently unknown. Epiphytic bryophytes on 82 Abies faxoniana Rehder & Wilson tree trunks (41 along the hiking trail edge and 41 controls in the forest interior) were investigated at four heights from the ground (10, 50, 120, and 180 cm). At each site, air temperature and humidity were monitored for 1 year. The light radiation levels and air temperature were higher, and the canopy leaf area index and air humidity lower at the trail edge, indicating deterioration in microclimate, resulting from the trail establishment. The epiphytic bryophyte species richness, community cover, and mean cover of dendroid and pendent growth forms on trunks were significantly lower at the trail edge than the control site, suggesting that trail construction caused these reductions. One marked effect of the presence of the trail was the increase in some sun-loving species and decrease in shade-tolerant species. Moreover, the trail also slightly influenced species richness and epiphytic bryophyte cover at both community and species population levels along the height gradient. Comprehensive analyses showed that microclimate deterioration was mainly driven by the trail establishment, and that the change in micro-climate along the trail, rather than any host traits, played an important role in the declining epiphytic bryophyte community structure and diversity at the trail edge, confirming the initial hypothesis that the presence of a raised boardwalk (hiking trail) indirectly influences epiphytic bryophyte community and diversity by altering the microclimate.
机译:森林远足径可能会影响当地的小气候和生物多样性,但是目前尚不清楚树木对附生苔藓植物对群落结构和多样性的影响。在距地面四个高度(10、50、120和180厘米)处研究了82棵冷杉冷杉树干上的附生苔藓植物(沿着远足径边缘的41个和森林内部的41个对照)。在每个站点,监测空气温度和湿度一年。尾迹边缘的光辐射水平和空气温度较高,而冠层叶面积指数和空气湿度较低,表明由尾迹形成引起的小气候恶化。树干边缘的附生苔藓植物物种丰富度,群落覆盖度以及树干上的树突和侧垂生长形式的平均覆盖度在边缘比对照位置显着降低,这表明路径的建设导致了这些减少。踪迹存在的一个显着影响是一些爱好阳光的物种增加而耐荫物种减少。此外,该踪迹还沿高度梯度在群落和物种种群水平上对物种丰富度和附生苔藓植物的覆盖率产生了轻微影响。综合分析表明,小气候的恶化主要是由小径的建立驱动的,小径上的小气候变化而不是任何寄主特征,在小道边缘的附生苔藓植物群落结构和多样性下降中起着重要作用,证实了最初的假设,即高架浮桥(远足径)的存在通过改变微气候而间接影响附生苔藓植物群落和多样性。

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