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Biocrusts buffer against the accumulation of soil metallic nutrients induced by warming and rainfall reduction.生物结皮可缓冲因变暖和降雨减少导致的土壤金属养分积累。
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Soil moisture dynamics under two rainfall frequency treatments drive early spring CO gas exchange of lichen-dominated biocrusts in central Spain.西班牙中部两种降雨频率处理下的土壤水分动态驱动地衣主导的生物结皮早春CO气体交换。
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本文引用的文献

1
Diversity of biocrust-forming cyanobacteria in a semiarid gypsiferous site from Central Spain.西班牙中部半干旱石膏质地区形成生物结皮的蓝藻多样性。
J Arid Environ. 2018 Apr 1;151:83-89. doi: 10.1016/j.jaridenv.2017.11.008. Epub 2017 Dec 1.
2
Albedo feedbacks to future climate via climate change impacts on dryland biocrusts.反照率通过气候变化对旱地生物结皮的影响反馈给未来气候。
Sci Rep. 2017 Mar 10;7:44188. doi: 10.1038/srep44188.
3
How lichens impact on terrestrial community and ecosystem properties.地衣对陆地群落和生态系统属性的影响。
Biol Rev Camb Philos Soc. 2017 Aug;92(3):1720-1738. doi: 10.1111/brv.12305. Epub 2016 Oct 11.
4
Photosynthesis and growth reduction with warming are driven by nonstomatal limitations in a Mediterranean semi-arid shrub.在地中海半干旱灌木中,光合作用和变暖导致的生长减少是由非气孔限制因素驱动的。
Ecol Evol. 2016 Mar 17;6(9):2725-38. doi: 10.1002/ece3.2074. eCollection 2016 May.
5
Bacteria increase arid-land soil surface temperature through the production of sunscreens.细菌通过产生防晒剂来提高干旱地区土壤表面温度。
Nat Commun. 2016 Jan 20;7:10373. doi: 10.1038/ncomms10373.
6
Warming reduces the cover and diversity of biocrust-forming mosses and lichens, and increases the physiological stress of soil microbial communities in a semi-arid Pinus halepensis plantation.气候变暖降低了半干旱阿勒颇松人工林中形成生物结皮的苔藓和地衣的覆盖度及多样性,并增加了土壤微生物群落的生理压力。
Front Microbiol. 2015 Aug 25;6:865. doi: 10.3389/fmicb.2015.00865. eCollection 2015.
7
Climate change and physical disturbance cause similar community shifts in biological soil crusts.气候变化和物理干扰会导致生物土壤结皮出现类似的群落变化。
Proc Natl Acad Sci U S A. 2015 Sep 29;112(39):12116-21. doi: 10.1073/pnas.1509150112. Epub 2015 Sep 14.
8
Biocrusts modulate warming and rainfall exclusion effects on soil respiration in a semi-arid grassland.生物结皮调节半干旱草原中增温与降雨排除对土壤呼吸的影响。
Soil Biol Biochem. 2015 Jan 1;80:9-17. doi: 10.1016/j.soilbio.2014.09.019.
9
Changes in biocrust cover drive carbon cycle responses to climate change in drylands.生物结皮覆盖度的变化驱动着旱地碳循环对气候变化的响应。
Glob Chang Biol. 2013 Dec;19(12):3835-47. doi: 10.1111/gcb.12306. Epub 2013 Sep 11.
10
Evidence of current impact of climate change on life: a walk from genes to the biosphere.气候变化对生命影响的当前证据:从基因到生物圈的探索。
Glob Chang Biol. 2013 Aug;19(8):2303-38. doi: 10.1111/gcb.12143. Epub 2013 Mar 25.

模拟气候变化影响生物土壤结皮在降雨事件后调节水分获取和干燥动态的方式。

Simulated climate change affects how biocrusts modulate water gains and desiccation dynamics after rainfall events.

作者信息

Lafuente Angela, Berdugo Miguel, de Guevara Mónica Ladrón, Gozalo Beatriz, Maestre Fernando T

机构信息

Departamento de Biología y Geología, Física y Química Inorgánica. Universidad Rey Juan Carlos, c/Tulipán s/n, 28933 Móstoles, Spain.

出版信息

Ecohydrology. 2018 Sep;11(6). doi: 10.1002/eco.1935. Epub 2017 Dec 22.

DOI:10.1002/eco.1935
PMID:30288205
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6166855/
Abstract

Soil surface communities dominated by mosses, lichens and cyanobacteria (biocrusts) are common between vegetation patches in drylands worldwide, and are known to affect soil wetting and drying after rainfall events. While ongoing climate change is already warming and changing rainfall patterns of drylands in many regions, little is known on how these changes may affect the hydrological behaviour of biocrust-covered soils. We used eight years of continuous soil moisture and rainfall data from a climate change experiment in central Spain to explore how biocrusts modify soil water gains and losses after rainfall events under simulated changes in temperature (2.5°C warming) and rainfall (33% reduction). Both rainfall amount and biocrust cover increased soil water gains after rainfall events, whereas experimental warming, rainfall intensity and initial soil moisture decreased them. Initial moisture, maximum temperature and biocrust cover, by means of enhancing potential evapotranspiration or by soil darkening, increased the drying rates and enhanced the exponential behaviour of the drying events. Meanwhile, warming reduced their exponential behaviour. The effects of climate change treatments on soil water gains and losses changed through time, with important differences between the first two years of the experiment and five years after its setup. These effects were mainly driven by the important reductions in biocrust cover and diversity observed under warming. Our results highlight the importance of long-term studies to understand soil moisture responses to ongoing climate change in drylands.

摘要

以苔藓、地衣和蓝藻(生物结皮)为主导的土壤表面群落,在全球旱地的植被斑块之间很常见,并且已知会影响降雨事件后的土壤湿润和干燥过程。虽然当前的气候变化已经使许多地区的旱地变暖并改变降雨模式,但对于这些变化如何影响生物结皮覆盖土壤的水文行为却知之甚少。我们利用西班牙中部一项气候变化实验的八年连续土壤湿度和降雨数据,来探究在模拟的温度变化(升温2.5°C)和降雨变化(减少33%)条件下,生物结皮如何改变降雨事件后土壤的水分得失。降雨总量和生物结皮覆盖率都增加了降雨事件后土壤的水分获取量,而实验性升温、降雨强度和初始土壤湿度则使其减少。初始湿度、最高温度和生物结皮覆盖率,通过增强潜在蒸散或使土壤变黑,提高了干燥速率并增强了干燥事件的指数行为。与此同时,升温降低了它们的指数行为。气候变化处理对土壤水分得失的影响随时间而变化,在实验的前两年和设置五年后存在重要差异。这些影响主要是由在升温条件下观察到的生物结皮覆盖率和多样性的显著降低所驱动的。我们的结果强调了长期研究对于理解旱地土壤湿度对当前气候变化的响应的重要性。