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在干旱生态系统中,气候变暖下叶片功能性状的协同作用。

Coordination of leaf functional traits under climatic warming in an arid ecosystem.

机构信息

State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China.

State Key Laboratory of Severe Weather, Chinese Academy of Meteorological Sciences, Beijing, 100081, China.

出版信息

BMC Plant Biol. 2022 Sep 14;22(1):439. doi: 10.1186/s12870-022-03818-z.

Abstract

BACKGROUND

Climatic warming is increasing regionally and globally, and results concerning warming and its consequent drought impacts have been reported extensively. However, due to a lack of quantitative analysis of warming severities, it is still unclear how warming and warming-induced drought influence leaf functional traits, particularly how the traits coordinate with each other to cope with climatic change. To address these uncertainties, we performed a field experiment with ambient, moderate and severe warming regimes in an arid ecosystem over 4 years.

RESULTS

Severe warming significantly reduced the specific leaf area and net photosynthetic rate with a relatively stable change and even enhancement under moderate warming, especially showing species-specific performance. The current results largely indicate that a coordinated trade-off can exist between plant functional traits in plant communities in a dryland ecosystem under ambient temperature conditions, which is strongly amplified by moderate warming but diminished or even eliminated by severe warming. Based on the present findings and recent results in the relevant literature, we advance the ecological conceptual models (e.g., LES and CSR) in the response to climatic warming in arid grassland communities, where the few key species play a crucial role by balancing their functional performances to cope with environmental change.

CONCLUSION

Our results highlight the importance of coordination and/or trade-off between leaf functional traits for understanding patterns of climatic change-induced vegetation degradation and suggest that the plant community composition in these drylands could be shifted under future climate change.

摘要

背景

气候变暖在区域和全球范围内不断加剧,有关变暖及其随之而来的干旱影响的研究结果已广泛报道。然而,由于缺乏对变暖严重程度的定量分析,目前仍不清楚变暖及其引发的干旱如何影响叶片功能特性,特别是这些特性如何相互协调以应对气候变化。为了解决这些不确定性,我们在干旱生态系统中进行了为期 4 年的野外实验,采用了环境、中度和重度变暖的处理。

结果

重度变暖显著降低了比叶面积和净光合速率,而中度变暖则导致相对稳定的变化甚至增强,尤其是表现出物种特异性。目前的结果表明,在环境温度条件下,干旱生态系统中的植物群落中可能存在植物功能特性之间的协调权衡,中度变暖会强烈放大这种权衡,而重度变暖则会减弱甚至消除这种权衡。基于目前的研究结果和相关文献中的最新结果,我们提出了干旱草原群落应对气候变暖的生态概念模型(如 LES 和 CSR),其中少数关键物种通过平衡其功能表现来应对环境变化,发挥着至关重要的作用。

结论

我们的研究结果强调了叶片功能特性之间协调和/或权衡对于理解气候变化引起的植被退化模式的重要性,并表明在未来的气候变化下,这些干旱地区的植物群落组成可能会发生变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3edc/9472406/7c0d8b8d8b4b/12870_2022_3818_Fig1_HTML.jpg

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