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How Forest Gap and Elevation Shaped Abies faxoniana Rehd. et Wils. Regeneration in a Subalpine Coniferous Forest, Southwestern China

机译:森林差距和海拔高度如何影响冷杉传真菌。 et Wils。中国西南亚高山针叶林更新

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Focusing on the underlying ecological mechanisms of dominant species regeneration in forest gaps at a landscape scale can provide detailed understanding for gap-based forest management. The individual effects of forest gaps or elevation on the regeneration of Abies faxoniana Rehd. et Wils. are well known, although elucidating how gap characteristics and elevation concurrently influence regeneration remains an important challenge. In this paper, we present an explorative study using structural equation models (SEMs) to assess the direct and indirect effects of forest gaps and elevation on Abies faxoniana Rehd. et Wils. regeneration. Four of the predicted SEMs showed the following results: (1) Temperature, photosynthetic photon flux density (PPFD), soil total carbon, gap openness, shrub layer cover, herb layer cover, and moss layer thickness in forest gaps were associated with Abies faxoniana regeneration along an elevation gradient in subalpine coniferous forest. (2) Elevation had a generally negative and indirect effect on Abies faxoniana regeneration. Forest gaps positively affected regeneration when compared with non-gap plots and gap size was positively related to small tree regeneration density and the ratio of height to diameter at breast height (HD ratio) of the tallest Abies faxoniana small trees but was negatively related to Abies faxoniana sapling regeneration density. (3) In forest gaps, the Abies faxoniana sapling density and HD ratio of the tallest Abies faxoniana small trees were mainly indirectly influenced by elevation, and Abies faxoniana small tree regeneration density was directly associated with the dominance of the sapling regeneration density. In summary, Abies faxoniana regeneration was negatively and largely affected by elevation (total effect), although forest gaps enhanced Abies faxoniana regeneration by multiple pathways (direct and indirect effects).
机译:在景观尺度上关注森林间隙优势种更新的潜在生态机制可以为基于间隙的森林管理提供详细的了解。森林缺口或海拔对冷杉冷杉冷杉更新的个体影响。 et Wils。尽管阐明间隙特征和高度如何同时影响再生仍然是一个重要的挑战,但众所周知。在本文中,我们使用结构方程模型(SEM)进行了一项探索性研究,以评估森林缺口和海拔对冷杉冷杉的直接和间接影响。 et Wils。再生。四个预测的SEM显示以下结果:(1)温度,光合光子通量密度(PPFD),土壤总碳,缺口开放度,灌木层覆盖率,草本层覆盖率和森林间隙中的苔藓层厚度与冷杉冷杉高山针叶林沿海拔梯度的植被更新。 (2)海拔升高对冷杉冷杉冷杉的繁殖普遍具有负面和间接影响。与非空白地块相比,林间空隙对再生具有积极影响,并且林间空隙的大小与高矮冷杉冷杉小树的小树更新密度和胸径高度与直径的比(HD比)成正相关,而与冷杉之间则呈负相关on树幼树的再生密度。 (3)在森林间隙中,海拔高度主要间接影响了冷杉冷杉幼树的密度和最高树冷杉幼树的HD比,而冷杉幼树的再生密度与树苗再生密度的优势直接相关。总而言之,尽管森林缺口通过多种途径(直接和间接影响)增强了冷杉冷杉的再生,但冷杉的冷杉更新受到海拔的负面影响和影响很大(总效应)。

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