Global influence of soil texture on ecosystem water limitation

IF 48.5 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Nature Pub Date : 2024-10-23 DOI:10.1038/s41586-024-08089-2
F. J. P. Wankmüller, L. Delval, P. Lehmann, M. J. Baur, A. Cecere, S. Wolf, D. Or, M. Javaux, A. Carminati
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Abstract

Low soil moisture and high vapour pressure deficit (VPD) cause plant water stress and lead to a variety of drought responses, including a reduction in transpiration and photosynthesis1,2. When soils dry below critical soil moisture thresholds, ecosystems transition from energy to water limitation as stomata close to alleviate water stress3,4. However, the mechanisms behind these thresholds remain poorly defined at the ecosystem scale. Here, by analysing observations of critical soil moisture thresholds globally, we show the prominent role of soil texture in modulating the onset of ecosystem water limitation through the soil hydraulic conductivity curve, whose steepness increases with sand fraction. This clarifies how ecosystem sensitivity to VPD versus soil moisture is shaped by soil texture, with ecosystems in sandy soils being relatively more sensitive to soil drying, whereas ecosystems in clayey soils are relatively more sensitive to VPD. For the same reason, plants in sandy soils have limited potential to adjust to water limitations, which has an impact on how climate change affects terrestrial ecosystems. In summary, although vegetation–atmosphere exchanges are driven by atmospheric conditions and mediated by plant adjustments, their fate is ultimately dependent on the soil. Through their effects on soil hydraulic properties, soil texture and sand content are shown to have broad implications for the terrestrial water cycle and carbon sink, and specific implications for vital ecosystems that are vulnerable to drought, especially with changing climate.

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土壤质地对生态系统水分限制的全球影响
低土壤湿度和高蒸气压差(VPD)会造成植物水分胁迫,并导致各种干旱反应,包括蒸腾作用和光合作用的降低1,2。当土壤干燥度低于临界土壤湿度阈值时,生态系统会从能量限制过渡到水分限制,因为气孔会关闭以缓解水分胁迫3,4。然而,在生态系统尺度上,这些临界值背后的机制仍不甚明了。在这里,通过分析全球临界土壤水分阈值的观测结果,我们发现土壤质地在通过土壤导水率曲线调节生态系统水分限制的开始方面起着重要作用,而土壤导水率曲线的陡度随沙粒含量的增加而增加。这阐明了土壤质地如何影响生态系统对 VPD 和土壤水分的敏感性,砂质土壤中的生态系统对土壤干燥相对更敏感,而粘质土壤中的生态系统对 VPD 相对更敏感。出于同样的原因,沙质土壤中的植物适应水分限制的潜力有限,这对气候变化如何影响陆地生态系统产生了影响。总之,虽然植被与大气的交换是由大气条件驱动并由植物调节介导的,但其命运最终取决于土壤。
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来源期刊
Nature
Nature 综合性期刊-综合性期刊
CiteScore
90.00
自引率
1.20%
发文量
3652
审稿时长
3 months
期刊介绍: Nature is a prestigious international journal that publishes peer-reviewed research in various scientific and technological fields. The selection of articles is based on criteria such as originality, importance, interdisciplinary relevance, timeliness, accessibility, elegance, and surprising conclusions. In addition to showcasing significant scientific advances, Nature delivers rapid, authoritative, insightful news, and interpretation of current and upcoming trends impacting science, scientists, and the broader public. The journal serves a dual purpose: firstly, to promptly share noteworthy scientific advances and foster discussions among scientists, and secondly, to ensure the swift dissemination of scientific results globally, emphasizing their significance for knowledge, culture, and daily life.
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