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冰川前缘隐花植物和维管植物多样性的模式和驱动因素。

Patterns and drivers of cryptogam and vascular plant diversity in glacier forelands.

机构信息

Professor Z. Czeppe Department of Polar Research and Documentation, Institute of Botany, Faculty of Biology, Jagiellonian University, Gronostajowa 3, 30-387 Kraków, Poland; Department of Earth Sciences, University of Gothenburg, P.O. Box 460, SE-405 30 Gothenburg, Sweden.

Department of Plant Ecology, Institute of Botany, Faculty of Biology, Jagiellonian University, Gronostajowa 3, 30-387 Kraków, Poland.

出版信息

Sci Total Environ. 2021 May 20;770:144793. doi: 10.1016/j.scitotenv.2020.144793. Epub 2021 Jan 19.

Abstract

Vascular and nonvascular plants are affected by environmental factors determining their distribution and shaping their diversity and cover. Despite the cryptogam commonness in Arctic communities, previous studies have often focused on limited number of factors and their impact on only selected species of vascular plants or cryptogams. Our study aimed to investigate in detail the differences in species diversity and cover of cryptogams and vascular plants in the glacier forelands and mature tundra on Svalbard. Furthermore, we determined the biotic and abiotic factors that affected diversity, cover and distribution of cryptogam and vascular plant species. In 2017, we established 201 plots in eight locations (each including habitat type of foreland and mature tundra) and surveyed species abundance, sampled soils and environmental data. Results revealed that diversity and cover of analysed groups differed significantly between locations and habitat types, except for cryptogam cover in mature tundra in terms of location. Distance to the glacier terminus, slope, soil conductivity, nutrient content, and clay content impacted both plant groups' diversity. In contrast, distance to the glacier terminus, nutrient content and soil pH affected their cover. In addition, for cryptogam diversity and cover, foreland location and vascular plant cover were also important, while for vascular plant cover time elapsed after glacier retreat was significant. Distribution of both groups' species in forelands was associated with time elapsed after glacier retreat, soil pH, and nutrient contents. Soil texture and distance to the glacier terminus additionally influenced cryptogam distribution. The positive impact of vascular plants on cryptogam diversity and cover indicates complex relationships between these groups, even in forelands' relatively simple communities. As the cryptogam diversity in the polar areas is high but still largely unknown, future studies on species ecology and climate change impact on vegetation should consider both vascular plants and cryptogams and interactions between these groups.

摘要

维管植物和非维管植物受决定其分布并塑造其多样性和覆盖范围的环境因素的影响。尽管隐花植物在北极群落中很常见,但以前的研究往往侧重于有限数量的因素及其对选定的维管植物或隐花植物物种的影响。我们的研究旨在详细调查斯瓦尔巴冰川前缘和成熟冻原中隐花植物和维管植物物种多样性和覆盖的差异。此外,我们确定了影响隐花植物和维管植物物种多样性、覆盖和分布的生物和非生物因素。2017 年,我们在八个地点(每个地点包括前缘和成熟冻原的栖息地类型)建立了 201 个样方,并调查了物种丰度、采样土壤和环境数据。结果表明,除成熟冻原的隐花植物覆盖度外,分析组的多样性和覆盖度在地点和栖息地类型之间存在显著差异。冰川末端的距离、坡度、土壤电导率、养分含量和粘粒含量对两组植物的多样性都有影响。相比之下,冰川末端的距离、养分含量和土壤 pH 值影响它们的覆盖度。此外,隐花植物多样性和覆盖度与前缘位置和维管植物覆盖度也很重要,而维管植物覆盖度与冰川后退时间有关。两组物种在前缘的分布与冰川后退时间、土壤 pH 值和养分含量有关。土壤质地和冰川末端的距离也影响了隐花植物的分布。维管植物对隐花植物多样性和覆盖度的积极影响表明,即使在相对简单的前缘群落中,这些群体之间也存在复杂的关系。由于极地地区的隐花植物多样性很高,但仍知之甚少,因此,未来关于物种生态学和气候变化对植被影响的研究应该同时考虑维管植物和隐花植物以及这些群体之间的相互作用。

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