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Processes driving understory community dynamics in Ulleungdo Island broadleaved forest, South Korea

机译:在韩国宽阔的林业林业林业林业林业博彩林业的林下社区动态

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The development stage of forest trees has considerable impact on the understory plant species; however, little research has been dedicated to in-depth investigation of the changes in the ecological processes (deterministic and stochastic) over a mid-term observational period (= 10 years). We analyzed the forest floor environment, including bare mineral soil, tree communities (density and biomass), understory plant species composition, diversity, cover, and changes in co-occurring species in the Albongbunji Basin on Ulleungdo Island over an 11-year period (2009-2019). The forest floor environment exhibited a broad spectrum of changes, beginning in the middle of the observation period and after heavy rainfall, and heavy sediment deposition events were observed. The overstory tree density showed patterns of a general increase and subsequent decline, and the overstory tree biomass increased and then remained steady. The heavy rainfall and sediment deposition as disturbance events also coincided with changes in species composition and the turnover rate of the understory plant communities, causing changes in major ecological processes. The general pattern of species co-occurrence (zeta diversity) was fitted to an exponential model, indicating the dominance of stochastic processes. The results show a shift in relative importance from deterministic to stochastic processes in the successional stages of understory plant community assembly over a mid-term observational period.
机译:林木的发展阶段对林植物物种具有相当大的影响;然而,小型研究致力于在中期观测期(& = 10年)中深入了解生态过程(确定性和随机)的变化。我们分析了森林地板环境,包括裸矿物土壤,树木社区(密度和生物量),林下植物物种组成,多样性,封面和在乌莱隆多岛上的Albongbunji盆地中的共同发生的种类在11年期间( 2009-2019)。森林地板环境表现出广泛的变化,从观察期间开始,大雨降雨后,观察到重度沉积物沉积事件。疏散树密度显示出一般增加和随后的下降的模式,并且夸大树生物量增加,然后保持稳定。作为扰动事件的大雨和沉积物沉积也恰逢物种组成的变化和林下植物社区的周转率,导致主要生态过程的变化。物种共同的一般模式(Zeta多样性)适用于指数模型,表明随机过程的优势。结果表明,在中期观测期间,林下植物社区组装的连续阶段的随机过程中的相对重要性的转变。

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