Javascript must be enabled to continue!
Physiological impacts of beech leaf disease across a gradient of symptom severity among understory American beech
View through CrossRef
Beech leaf disease (BLD) damage is associated with the parasitic nematode Litylenchus crenatae ssp. mccannii. Foliar symptoms manifest as darkened or chlorotic galls in the interveinal portions in the leaf, which become leathery and crinkled under high severity of infection. Though nearly a decade has passed since the discovery of this disease, little is known regarding the impact of BLD on leaf function and physiology. This study assesses the variation in leaf gas exchange and physiological leaf traits among asymptomatic and BLD-infected leaves across a gradient of symptom severity within a natural forested stand in central Connecticut, USA. Leaves with BLD symptoms are found to have significantly reduced carbon assimilation and instantaneous water use efficiency, with increased levels of stomatal conductance as symptom severity progresses. Leaf response to light manipulation is also affected, with an increase in dark respiration and the light compensation point among banded and crinkled leaves. Additionally, BLD symptoms are found to have a significant influence on leaf water content, specific leaf area, and leaf nitrogen content. Relationships between gas exchange and these leaf traits yield linear correlations that are used to infer functional relationships impacted by the disease.
Title: Physiological impacts of beech leaf disease across a gradient of symptom severity among understory American beech
Description:
Beech leaf disease (BLD) damage is associated with the parasitic nematode Litylenchus crenatae ssp.
mccannii.
Foliar symptoms manifest as darkened or chlorotic galls in the interveinal portions in the leaf, which become leathery and crinkled under high severity of infection.
Though nearly a decade has passed since the discovery of this disease, little is known regarding the impact of BLD on leaf function and physiology.
This study assesses the variation in leaf gas exchange and physiological leaf traits among asymptomatic and BLD-infected leaves across a gradient of symptom severity within a natural forested stand in central Connecticut, USA.
Leaves with BLD symptoms are found to have significantly reduced carbon assimilation and instantaneous water use efficiency, with increased levels of stomatal conductance as symptom severity progresses.
Leaf response to light manipulation is also affected, with an increase in dark respiration and the light compensation point among banded and crinkled leaves.
Additionally, BLD symptoms are found to have a significant influence on leaf water content, specific leaf area, and leaf nitrogen content.
Relationships between gas exchange and these leaf traits yield linear correlations that are used to infer functional relationships impacted by the disease.
Related Results
Impacts of Beech Bark Disease and Climate Change on American Beech
Impacts of Beech Bark Disease and Climate Change on American Beech
American beech (Fagus grandifolia Ehrh.) is a dominant component of forest tree cover over a large portion of eastern North America and this deciduous, mast-bearing tree species pl...
Evaluation of understory LAI estimation methodologies over forest ecosystem ICOS sites across Europe
Evaluation of understory LAI estimation methodologies over forest ecosystem ICOS sites across Europe
<p>Leaf area index (i.e. one-half the total green leaf area per unit of horizontal ground surface area) is a crucial parameter in carbon balancing and modeling. Fores...
First Report of Beech Leaf Disease Caused by the Foliar Nematode
Litylenchus crenatae
on American Beech in North Carolina
First Report of Beech Leaf Disease Caused by the Foliar Nematode
Litylenchus crenatae
on American Beech in North Carolina
Beech leaf disease (BLD) is a newly emergent and potentially lethal condition of beech trees (Fagus spp.) in North America, caused by the foliar nematode, Litylenchus crenatae (Lc)...
Light heterogeneity affects understory plant diversity in temperate forests confirming the heterogeneity-diversity hypothesis
Light heterogeneity affects understory plant diversity in temperate forests confirming the heterogeneity-diversity hypothesis
One of the most important drivers of the coexistence of species is the
resource heterogeneity of a certain environment. Thus, many studies in
different ecosystems have been carried...
Conspecific Adult Dominance Interacts With Microsite Factors to Influence Forest Regeneration Patterns Across Elevation
Conspecific Adult Dominance Interacts With Microsite Factors to Influence Forest Regeneration Patterns Across Elevation
ABSTRACT
Aim
As climate warms, contemporary tree regeneration patterns will affect future forest composition. Yet the fac...
Shrub traits of forest and shrubland reveal different growth strategies
Shrub traits of forest and shrubland reveal different growth strategies
<p>Shrub plants play important roles in both forest and shrubland ecosystems. Analyzing the differences of functional traits of shrubs grown in understory of forest c...
Silvicultural Management of Beech and the Beech Bark Disease
Silvicultural Management of Beech and the Beech Bark Disease
Abstract
Herbicides were used to control dense, advance reproduction of American beech and sprouting from roots and stumps of harvested beech in a northern hardwood ...
The soil fauna community in pure and mixed stands of beech and spruce of different age: trophic structure and structuring forces
The soil fauna community in pure and mixed stands of beech and spruce of different age: trophic structure and structuring forces
This study investigates the response of the soil fauna community to replacement of beech by spruce or by mixed stands of beech and spruce. Stands of different age were investigated...

