Department of Physics, Ben-Gurion University of the Negev, Beer-Sheva, 8410501, Israel.
Department of Solar Energy and Environmental Physics, SIDEER, Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sede Boqer Campus, Midreshet Ben-Gurion, 8499000, Israel.
Sci Rep. 2019 Dec 20;9(1):19577. doi: 10.1038/s41598-019-56080-z.
The predictions for a warmer and drier climate and for increased likelihood of climate extremes raise high concerns about the possible collapse of dryland ecosystems, and about the formation of new drylands where native species are less tolerant to water stress. Using a dryland-vegetation model for plant species that display different tradeoffs between fast growth and tolerance to droughts, we find that ecosystems subjected to strong seasonal variability, typical for drylands, exhibit a temporal period-doubling route to chaos that results in early collapse to bare soil. We further find that fast-growing plants go through period doubling sooner and span wider chaotic ranges than stress-tolerant plants. We propose the detection of period-doubling signatures in power spectra as early indicators of ecosystem collapse that outperform existing indicators in their ability to warn against climate extremes and capture the heightened vulnerability of newly-formed drylands. The proposed indicator is expected to apply to other types of ecosystems, such as consumer-resource and predator-prey systems. We conclude by delineating the conditions ecosystems should meet in order for the proposed indicator to apply.
预测表明气候将更加温暖干燥,气候极端事件发生的可能性增加,这引发了人们对旱地生态系统可能崩溃的高度关注,以及对新旱地形成的担忧,在这些新旱地中,本地物种对水分胁迫的耐受性较低。我们使用一种具有不同快速生长和耐旱性权衡的植物物种的旱地植被模型发现,那些受到强烈季节性变化影响的旱地系统,表现出一种通向混沌的时间倍周期分岔途径,这会导致生态系统在早期就退化到裸露土壤。我们进一步发现,与耐旱植物相比,快速生长的植物经历倍周期分岔的时间更早,跨越的混沌范围更广。我们提出了在功率谱中检测倍周期分岔特征作为生态系统崩溃的早期指标,其在预警气候极端事件和捕捉新形成的旱地的脆弱性方面的性能优于现有指标。预计所提出的指标将适用于其他类型的生态系统,如消费者-资源和捕食者-猎物系统。最后,我们划定了生态系统应满足的条件,以便应用所提出的指标。