Half a Century of Temperate Non-Forest Vegetation Changes: No Net Loss in Species Richness, but Considerable Shifts in Taxonomic and Functional Composition

IF 12 1区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION Global Change Biology Pub Date : 2025-01-24 DOI:10.1111/gcb.70030
Klára Klinkovská, Marta Gaia Sperandii, Ilona Knollová, Jiří Danihelka, Michal Hájek, Petra Hájková, Zdenka Hroudová, Martin Jiroušek, Jan Lepš, Jana Navrátilová, Tomáš Peterka, Petr Petřík, Karel Prach, Klára Řehounková, Jaroslav Rohel, Vojtěch Sobotka, Michal Vávra, Helge Bruelheide, Milan Chytrý
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Abstract

In recent decades, global change and local anthropogenic pressures have severely affected natural ecosystems and their biodiversity. Although disentangling the effects of these factors is difficult, they are reflected in changes in the functional composition of plant communities. We present a comprehensive, large-scale analysis of long-term changes in plant communities of various non-forest habitat types in the Czech Republic based on 1154 vegetation-plot time series from 53 resurvey studies comprising 3909 vegetation-plot records. We focused not only on taxonomic diversity but also on the functional characteristics of communities. Species richness of most habitat types increased over time, and taxonomic and functional community composition shifted significantly. Habitat specialists and threatened species became less represented in plant communities, indicating a decline in habitat quality. The spread of trees, shrubs, tall herbaceous plants, strong competitors, and nutrient-demanding species in all non-forest habitats, coupled with the decline of light-demanding species, suggests an effect of eutrophication and natural succession following the abandonment of traditional management. Moreover, we identified specific trends in certain habitats. In wetlands, springs, and mires, moisture-demanding species decreased, probably due to drainage, river regulations, and increasing drought resulting from climate change. Dry grasslands, ruderal, weed, sand, and shallow-soil vegetation became more mesic, and successional processes were most pronounced in these communities, suggesting a stronger effect of abandonment of traditional management and eutrophication. In alpine and subalpine vegetation, meadows and mesic pastures, and heathlands, insect-pollinated species declined, and the proportion of grasses increased. Overall, these functional changes provide deep insights into the underlying drivers and help conservationists take appropriate countermeasures.

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半个世纪的温带非森林植被变化:物种丰富度没有净损失,但分类和功能组成发生了相当大的变化
近几十年来,全球变化和局部人为压力严重影响了自然生态系统及其生物多样性。虽然这些因素的影响很难解开,但它们反映在植物群落功能组成的变化中。基于53项植被样地调查的1154个植被样地时间序列,包括3909个植被样地记录,我们对捷克共和国各种非森林生境类型的植物群落的长期变化进行了全面、大规模的分析。我们不仅关注群落的分类多样性,还关注群落的功能特征。大多数生境类型的物种丰富度随时间的推移而增加,分类和功能群落组成发生显著变化。生境专家和受威胁物种在植物群落中的代表性下降,表明生境质量下降。在所有非森林生境中,乔木、灌木、高大草本植物、强竞争植物和营养需求物种的扩展,以及光需求物种的减少,表明在放弃传统管理后,富营养化和自然演替的影响。此外,我们还确定了某些栖息地的具体趋势。在湿地、泉水和沼泽中,需要水分的物种减少了,这可能是由于排水、河流管理以及气候变化导致的干旱加剧。干草地、荒草、杂草、沙土和浅层植被变得更加混乱,演替过程在这些群落中最为明显,表明放弃传统管理和富营养化的影响更大。在高寒和亚高寒植被、草甸和仲科牧草、石楠原野中,昆虫传粉的种类减少,禾草的比例增加。总的来说,这些功能变化提供了对潜在驱动因素的深刻见解,并帮助保护主义者采取适当的对策。
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来源期刊
Global Change Biology
Global Change Biology 环境科学-环境科学
CiteScore
21.50
自引率
5.20%
发文量
497
审稿时长
3.3 months
期刊介绍: Global Change Biology is an environmental change journal committed to shaping the future and addressing the world's most pressing challenges, including sustainability, climate change, environmental protection, food and water safety, and global health. Dedicated to fostering a profound understanding of the impacts of global change on biological systems and offering innovative solutions, the journal publishes a diverse range of content, including primary research articles, technical advances, research reviews, reports, opinions, perspectives, commentaries, and letters. Starting with the 2024 volume, Global Change Biology will transition to an online-only format, enhancing accessibility and contributing to the evolution of scholarly communication.
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