Found 20 results
Author Title [ Type
Filters: Author is Fernandez, Catherine [Clear All Filters]
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2011.
Chronic {Drought} {Decreases} {Anabolic} and {Catabolic} {BVOC} {Emissions} of {Quercus} pubescens in a {Mediterranean} {Forest}. Frontiers in Plant Science. 8:71.
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2017. Climate change effects on litter decomposition: intensive drought leads to a strong decrease of litter mixture interactions. Plant and Soil. 393:69–82.
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2015. Contrasting responses of bacterial and fungal communities to plant litter diversity in a {Mediterranean} oak forest. Soil Biology and Biochemistry. 125:27–36.
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2018. Effect of mid-term drought on {Quercus} pubescens {BVOCs}' emission seasonality and their dependency on light and/or temperature. Atmospheric Chemistry and Physics. 17:7555–7566.
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2017. .
2020. The {Impact} of {Competition} and {Allelopathy} on the {Trade}-{Off} between {Plant} {Defense} and {Growth} in {Two} {Contrasting} {Tree} {Species}. Frontiers in Plant Science. 7:594.
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2016. Isoprene contribution to ozone production under climate change conditions in the {French} {Mediterranean} area. Regional Environmental Change. 20:111.
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2020. Isoprene contribution to ozone production under climate change conditions in the {French} {Mediterranean} area. Regional Environmental Change. 20:111.
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2020. Mediterranean forests, land use and climate change: {A} socio-ecological perspective. Regional Environmental Change. 18:623–636.
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2018. Mediterranean woody plant specialized metabolites affect germination of {Linum} perenne at its dry and upper thermal limits. Plant and Soil. 446:291–305.
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2020. Mediterranean woody plant specialized metabolites affect germination of {Linum} perenne at its dry and upper thermal limits. Plant and Soil. 446:291–305.
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2020. Plant litter mixture partly mitigates the negative effects of extended drought on soil biota and litter decomposition in a {Mediterranean} oak forest. Journal of Ecology. 105:801–815.
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2017. Potential {Shift} in {Plant} {Communities} with {Climate} {Change}: {Outcome} on {Litter} {Decomposition} and {Nutrient} {Release} in a {Mediterranean} {Oak} {Forest}. Ecosystems. 18:1253–1268.
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2015. Resistance of native oak to recurrent drought conditions simulating predicted climatic changes in the {Mediterranean} region. Plant, Cell & Environment. 41:2299–2312.
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2018. .
2020. .
2020. Seasonal variations of \textit{{Quercus} pubescens} isoprene emissions from an \textit{in natura} forest under drought stress and sensitivity to future climate change in the {Mediterranean} area. Biogeosciences. 15:4711–4730.
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2018. A top-down approach of surface carbonyl sulfide exchange by a {Mediterranean} oak forest ecosystem in southern {France}. Atmospheric Chemistry and Physics. 16:14909–14923.
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2016. .
2019.