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Relationship between Forest Ecophysiology and Environment

Relationship between Forest Ecophysiology and Environment

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Ecophysiological mechanisms underlie plant responses to environmental conditions and the influence these responses have on ecological patterns and processes. In this Special Issue, with a particular interest in the interactions between climate change, environmental disturbance, and functional ecology, experimental observations are described at a range of spatial scales. A modeling framework is used in an effort to relate mechanistic responses to ecosystem functions and services, and link forest ecophysiology and environmental indicators. This Special Issue collects important advances in studying and monitoring plant–environment interactions, covering biogeographic gradients from Mediterranean woodlands to boreal forests and from Alpine mountains to tropical environments.

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Keywords

  • adaptive strategies
  • allometry
  • altitude
  • Aspromonte National Park
  • autotoxicity
  • Biology, Life Sciences
  • boreal forest
  • branch lifespan
  • branch shedding
  • canopy
  • canopy tree species
  • carbon isotopes
  • Carbon sequestration
  • Cinnamomum migao
  • Climate Change
  • climate niches
  • climate response
  • cold stress
  • crown development
  • deciduous forest
  • dendrochronology
  • dendrometer
  • Discrimination
  • Economics, finance, business & management
  • electron transfer
  • endangered
  • Environmental factors
  • excess absorbed light energy
  • forest productivity
  • Forestry & related industries
  • functional traits
  • growth stage
  • heat dissipation
  • Industry & industrial studies
  • keeling plot
  • Larix decidua Mill
  • leaf angle
  • leaf functional traits
  • leaf temperature
  • leaf thermal damage
  • leaf thickness
  • leaf three-dimensional structure
  • Leaf δ13C
  • Leaf δ15N
  • Light
  • light acclimation
  • light environment
  • light foraging
  • light regime
  • Malus baccata
  • Mathematics & science
  • MbERF11
  • Mediterranean
  • mixed forest
  • MOEd
  • n/a
  • nitrogen dioxide
  • nitrogen metabolism
  • Non-structural carbohydrates
  • Nutrients
  • ontogenetic phases
  • ontogeny
  • phenotypic plasticity
  • photochemical efficiency
  • photorespiration
  • Photosynthesis
  • Pinus cembra L.
  • Pinus nigra
  • Pinus pinaster
  • Primary industries
  • recruitment period
  • Reference, information & interdisciplinary subjects
  • relative importance
  • reproductive system
  • Research & information: general
  • Respiration
  • Salinity
  • salt stress
  • seed germination
  • seedling growth
  • sessile oak
  • shade acclimation
  • shade tolerance
  • shoot lifespan
  • shoot shedding
  • soil enzyme
  • soil fungi
  • soil substrate
  • Sonneratia × hainanensis
  • stem circumference changes
  • stem lifespan
  • stem shedding
  • sunfleck
  • temperature
  • thema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: general
  • thema EDItEUR::K Economics, Finance, Business and Management::KN Industry and industrial studies::KNA Agribusiness and primary industries::KNAL Forestry industry
  • thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
  • thermoregulation
  • transgenic plant
  • tree architecture
  • TreeSonic
  • water availability
  • wood density

Links

DOI: 10.3390/books978-3-0365-0649-4

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