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雪、火与干旱:模拟气候变化如何影响高山及林线土壤种子库

Snow, fire and drought: how alpine and treeline soil seed banks are affected by simulated climate change.

作者信息

Vázquez-Ramírez Jerónimo, Venn Susanna E

机构信息

Centre for Integrative Ecology, School of Life and Environmental Sciences, Deakin University, 221 Burwood Highway, Burwood, VIC 3125, Australia.

出版信息

Ann Bot. 2025 Feb 8;135(1-2):223-238. doi: 10.1093/aob/mcad184.

Abstract

BACKGROUND AND AIMS

Seed persistence in soil depends on environmental factors that affect seed dormancy and germination, such as temperature and water availability. In high-elevation ecosystems, rapid changes in these environmental factors because of climate change can impact future plant recruitment. To date, our knowledge on how soil seed banks from high-elevation environments will respond to climate change and extreme climate-related events is limited. Here, using the seedling emergence method, we investigated the effects of reduced snow cover, fire and drought on the density and diversity of germinants from soil seed banks of two high-elevation plant communities: a tall alpine herbfield and a treeline ecotone.

METHODS

In Autumn 2020, we collected soil samples and characterized the standing vegetation of both communities at Kosciuszko National Park, Australia. Subsequently, we carried out a factorial experiment and subjected the soil samples to a series of manipulative treatments using greenhouse studies.

KEY RESULTS

The treeline had a larger and more diverse soil seed bank than the herbfield. A reduction in snow had a negative effect on the number of germinants in the herbfield and increased the dissimilarity with the standing vegetation, whereas the treeline responses were mainly neutral. Fire did not significantly affect the number of germinants but decreased the evenness values in both communities. The drought treatment reduced the number and richness of germinants and increased the dissimilarity with the standing vegetation in both communities. Plant functional forms explained some of the detected effects, but seed functional traits did not.

CONCLUSIONS

Our study suggests that simulated climate change will affect plant recruitment from soil seed banks in a variety of ways. Changes in snow cover and incidences of fire and drought might be key drivers of germination from the soil seed bank and therefore the future composition of alpine plant communities.

摘要

背景与目的

种子在土壤中的持久性取决于影响种子休眠和萌发的环境因素,如温度和水分可利用性。在高海拔生态系统中,由于气候变化导致的这些环境因素的快速变化会影响未来植物的更新。迄今为止,我们对高海拔环境中的土壤种子库如何应对气候变化和与极端气候相关的事件的了解有限。在此,我们采用幼苗出土法,研究了积雪减少、火灾和干旱对两个高海拔植物群落(一个高山高草甸和一个林线交错带)土壤种子库中萌发种子的密度和多样性的影响。

方法

2020年秋季,我们在澳大利亚科修斯科国家公园采集了土壤样本,并对两个群落的现存植被进行了特征描述。随后,我们进行了析因实验,并利用温室研究对土壤样本进行了一系列操控处理。

主要结果

林线的土壤种子库比高草甸的更大且更多样化。积雪减少对高草甸中萌发种子的数量有负面影响,并增加了与现存植被的差异,而林线的反应主要呈中性。火灾对萌发种子的数量没有显著影响,但降低了两个群落的均匀度值。干旱处理减少了两个群落中萌发种子的数量和丰富度,并增加了与现存植被的差异。植物功能型解释了部分检测到的影响,但种子功能性状并未起到解释作用。

结论

我们的研究表明,模拟气候变化将以多种方式影响土壤种子库中的植物更新。积雪覆盖的变化以及火灾和干旱的发生可能是土壤种子库萌发的关键驱动因素,因此也是高山植物群落未来组成的关键驱动因素。

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