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Seasonal Dynamics of Floodplain Forest Understory–Impacts of Degradation, Light Availability and Temperature on Biomass and Species Composition

机译:洪泛区森林的季节性动态林下影响的生物质和物种组成的降解,光可用性和温度

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摘要

Forest understory significantly contributes to matter cycling in ecosystems, but little is known about its carbon pool. This is especially poorly understood in floodplain forests, one of the most threatened ecosystems worldwide. We studied seasonal dynamics of biomass and species composition of understory vegetation in degraded and non-degraded floodplain forests, to improve our understanding of carbon pools in forest ecosystems. We hypothesized that degraded and non-degraded floodplain forests will differ in patterns of seasonal variability of biomass and species composition. The study was conducted in Poznań (W Poland) in two study plots (each with 10 samples) across 22 dates (March–November 2016). In each date, we collected understory aboveground biomass. We evaluated impact of light availability and soil temperature on biomass and species composition. Our study revealed high dynamics of biomass production. We found maximum biomass crop of understory in degraded floodplain forest on 24 April (930.12 ± 48.70 kg ha−1), whereas in non-degraded floodplain forest the maximum occurred on 30 May (768.99 ± 40.65 kg ha−1). At the beginning of the growing season, understory biomass was dominated by spring ephemerals and later these species were replaced by others present for the whole season. Additionally, we confirmed the positive impacts of light availability and temperature on understory primary production. The pattern revealed drove species composition shifts and low differences in biomass crop between consecutive dates. Patterns of understory biomass dynamics differed between degraded and non-degraded plots. Despite study limitations, we provided rare data about understory biomass dynamics of floodplain forests, increasing knowledge about carbon accumulation and cycling in floodplain forests, and contributing to global carbon assessments.
机译:林下显著有助于重要生态系统的循环,但很少有人知道它的碳库。这是特别了解甚少在河漫滩森林,世界上最濒危的生态系统之一。我们研究了林下植被的生物量和物种组成的季节动态退化和非退化的森林漫滩,以提高我们在森林生态系统碳汇的了解。我们假设,退化和非退化的森林漫滩将生物质和物种组成的季节变化模式不同。这项研究是在波兹南​​(W波兰)在两个研究地块(每10个样品)的22个日期(3月 - 2016年11月)进行。在每一个日子里,我们收集林下地上生物量。我们评价了生物量和种类组成光可用性和土壤温度的影响。我们的研究揭示了生物质生产的高动态。我们发现在退化漫滩林下最大生物量农作物4月24日(930.12±48.70公斤HA-1),而在非恶化漫滩森林发生在5月30日的最大值(768.99±40.65公斤公顷-1)。在生长季节的开始,林下生物质被春季短命植物为主,后来这些物种被其他在场整个赛季取代。此外,我们证实了光可用性和温度对下木初级生产的积极影响。揭示了图案开车物种组成的变化和在连续的日期之间的生物质农作物低差异。林下生物量动态的模式退化和非退化地块之间的差异。尽管研究的局限性,我们提供了难得的资料约漫滩森林的林下生物量动态,提高对碳积累的知识和漫滩森林循环,并促进全球碳评估。

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