Open Journal of Forestry

Open Journal of Forestry

ISSN Print: 2163-0429
ISSN Online: 2163-0437
www.scirp.org/journal/ojf
E-mail: ojf@scirp.org
"Drought and Heat Triggers Sudden and Severe Dieback in a Dominant Mediterranean-Type Woodland Species"
written by George Matusick, Katinka X. Ruthrof, Giles St. J. Hardy,
published by Open Journal of Forestry, Vol.2 No.4, 2012
has been cited by the following article(s):
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[4] Extreme Events Trigger Terrestrial and Marine Ecosystem Collapses in the Southwestern USA and Southwestern Australia
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[5] Multi-scale assessment of drought-induced forest dieback
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[6] Refuges and ecological traps: extreme drought threatens persistence of an endangered fish in intermittent streams
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[7] Ecophysiological mechanisms underpinning resilience to climate change in the Northern Jarrah Forest (Western Australia)
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[8] Investigating Banksia Coastal Woodland Decline Using Multi-Temporal Remote Sensing and Field-Based Monitoring Techniques
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[9] Resilience of Spanish forests to recent droughts and climate change
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[10] A multi-sensor, multi-scale approach to mapping tree mortality in woodland ecosystems
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[11] Relationship between the common brushtail possum (Trichosurus vulpecula) and tuart (Eucalyptus gomphocephala) tree decline in Western Australia
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[12] Carbon consequences of drought differ in forests that resprout
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[13] Intraspecific variation in drought susceptibility in Eucalyptus globulus is linked to differences in leaf vulnerability
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[14] 干旱条件下栓皮栎叶片光系统活性受损的温度指标
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[15] Approved Conservation Advice (incorporating listing advice) for the Tuart (Eucalyptus gomphocephala) woodlands and forests of the Swan Coastal Plain …
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[16] Seasonal and daily variations in primary and secondary metabolism of three maquis shrubs unveil different adaptive responses to Mediterranean climate
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[17] Temperature Index of Quercus variabilis Leaf PSII Activity Damage under High Temperature Combined with Drought
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[18] Anthropogenic disturbance impacts stand structure and susceptibility of an iconic tree species to an endemic canker pathogen
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[19] Diversity of fungi associated with roots of Eucalyptus gomphocephala seedlings grown in soil from healthy and declining sites
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[20] Subcontinental heat wave triggers terrestrial and marine, multi-taxa responses
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[21] Tuart (Eucalyptus gomphocephala) decline is not associated with other vegetation structure and composition changes
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[22] Forest die-off following global-change-type drought alters rhizosphere fungal communities
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[23] Chronic historical drought legacy exacerbates tree mortality and crown dieback during acute heatwave-compounded drought
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[24] Importance of climate, anthropogenic disturbance and pathogens
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[25] Factors predisposing Corymbia calophylla trees to canker disease caused by Quambalaria coyrecup
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[26] Changes in water and carbon in Australian vegetation in response to climate change
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[27] The 'chicken or the egg': which comes first, forest tree decline or loss of mycorrhizae?
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[28] Importance of climate, anthropogenic disturbance and pathogens (Quambalaria coyrecup and Phytophthora spp.) on marri (Corymbia calophylla) tree health in …
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[29] Impacts of climate change on eucalypt distributions in Australia: an examination of a recent study
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[30] Importance of climate, anthropogenic disturbance and pathogens (Quambalaria coyrecup and Phytophthora spp.) on marri (Corymbia calophylla) tree health …
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[31] Resistance, resilience and adaptation to climate change in riparian ecosystems
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[32] Living (and reproducing) on the edge: reproductive phenology is impacted by rainfall and canopy decline in a Mediterranean eucalypt
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[33] The Impacts of Extreme Climatic Events on Wild Plant Populations
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[34] Feeling the cold in a warming climate: differential effects of low temperatures on co-occurring eucalypts
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[35] Distribution, Predictors, and Impacts of Emerald Ash Borer (Agrilus planipennis)(Coleoptera: Buprestidae) Infestation of White Fringetree (Chionanthus virginicus)
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[36] Vegetation dynamics and rainfall sensitivity for different vegetation types of the Australian continent in the dry period 2002–2010
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[37] Eucalyptus forest shows low structural resistance and resilience to climate change‐type drought
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[38] Decreasing Net Primary Production in forest and shrub vegetation across southwest Australia
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[39] Spatial Configuration of Drought Disturbance and Forest Gap Creation across Environmental Gradients
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[40] How drought-induced forest die-off alters microclimate and increases fuel loadings and fire potentials
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[41] . Terrestrial and Inland Water Systems
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[42] Early Differential Responses of Co-dominant Canopy Species to Sudden and Severe Drought in a Mediterranean-climate Type Forest
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[43] Outbreak of Phoracantha semipunctata in Response to Severe Drought in a Mediterranean Eucalyptus Forest
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[44] Promoting seedling physiological performance and early establishment in degraded Mediterranean-type ecosystems
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[45] Forest resilience and tipping points at different spatio‐temporal scales: approaches and challenges
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[46] Keeping up with climate change: assessing the vulnerability of Eucalyptus species to a changing climate in the south-west of Western Australia
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[47] The role of mycorrhizal fungi in Eucalyptus gomphocephala (Tuart) health
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[48] Signs of wildlife activity and Eucalyptus wandoo condition
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[49] Topography influences the distribution of autumn frost damage on trees in a Mediterranean-type Eucalyptus forest
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[50] Is the loss of Australian digging mammals contributing to a deterioration in ecosystem function?
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[51] Monitoring and modelling forest and woodland declines under a drying climate, from individual tree canopies to landscapes across the southwest of Western Australia
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[52] Is the loss of A ustralian digging mammals contributing to a deterioration in ecosystem function?
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[53] Counting the costs of multiple stressors: is the whole greater than the sum of the parts?
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[54] Do woodland birds prefer to forage in healthy Eucalyptus wandoo trees?
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[55] Signatures of diversifying selection at EST‐SSR loci and association with climate in natural Eucalyptus populations
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[56] Linking a decade of forest decline in the south-west of Western Australia to bioclimatic change
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