globalchange  > 气候减缓与适应
DOI: 10.1007/s10533-018-0521-3
WOS记录号: WOS:000454598000004
论文题名:
Pathogen-induced tree mortality interacts with predicted climate change to alter soil respiration and nutrient availability in Mediterranean systems
作者: Manuel Avila, Jose1; Gallardo, Antonio2; Gomez-Aparicio, Lorena1,3
通讯作者: Manuel Avila, Jose
刊名: BIOGEOCHEMISTRY
ISSN: 0168-2563
EISSN: 1573-515X
出版年: 2019
卷: 142, 期:1, 页码:53-71
语种: 英语
英文关键词: Aridity ; Climate change ; Drought ; Forest disease ; Global change ; Mediterranean shrubs ; Non-additive effects ; Oak decline ; Pathogen ; Phytophthora cinnamomi ; Quercus suber ; Soil nutrients ; Soil respiration ; Warming
WOS关键词: ANION-EXCHANGE MEMBRANES ; LONG-TERM CHANGES ; MICROBIAL BIOMASS ; ECOSYSTEM CARBON ; PHYTOPHTHORA-CINNAMOMI ; LITTER DECOMPOSITION ; FORESTS IMPLICATIONS ; PHOSPHATASE-ACTIVITY ; NUTRITIONAL-STATUS ; PLANT DIVERSITY
WOS学科分类: Environmental Sciences ; Geosciences, Multidisciplinary
WOS研究方向: Environmental Sciences & Ecology ; Geology
英文摘要:

Ecosystems worldwide must simultaneously cope with several global change drivers with potential strong effects on ecosystem functioning. These drivers might interact in unexpected ways, but our still limited understanding of these interactive effects precludes us from predicting the impact of global change on ecosystem functioning. In this study we assessed the direct effects of pathogen-induced tree mortality and predicted warming and drought on C, N and P in Mediterranean forest soils affected by the decline of their dominant tree species (i.e. Quercus suber) due to the invasive pathogen Phytophthora cinnamomi. We also explored the potential indirect effects due to species replacement after Q. suber mortality. To achieve our goal, we conducted a soil incubation experiment using soils collected under Q. suber trees with different health status (i.e. healthy, defoliated and dead trees) and from coexistent shrubs (i.e. pioneer and late successional shrubs). These soils were incubated under controlled temperatures and soil moistures, mimicking various climate change scenarios predicted for 2050 and 2100 in the Mediterranean Basin. Our results showed that P. cinnamomi-induced mortality and future warming and drought may interact to simultaneously alter biogeochemical cycles in Q. suber forest soils. Resistance of studied variables to changes in temperature and moisture tended to be lower for dead trees than for healthy and defoliated trees. Moreover, we found that soil respiration and nutrient availability might be affected indirectly by P. cinnamomi-induced mortality due to species replacement. Overall, our results support a high potential of invasive pathogen species for modifying the response of soil functioning to climatic stressors.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/125803
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作者单位: 1.CSIC, Inst Recursos Nat & Agrobiol IRNAS, Av Reina Mercedes 10, ES-41012 Seville, Spain
2.Univ Pablo Olavide, Dept Sistemas Fis Quim & Nat, ES-41013 Seville, Spain
3.CSIC, Inst Recursos Nat & Agrobiol IRNAS, Lab Int Cambio Global LINCGlobal, Av Reina Mercedes 10, ES-41012 Seville, Spain

Recommended Citation:
Manuel Avila, Jose,Gallardo, Antonio,Gomez-Aparicio, Lorena. Pathogen-induced tree mortality interacts with predicted climate change to alter soil respiration and nutrient availability in Mediterranean systems[J]. BIOGEOCHEMISTRY,2019-01-01,142(1):53-71
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