Javascript must be enabled to continue!
Bark Stripping by Deer Was More Intensive on New Recruits than on Advanced Regenerants in a Subalpine Forest
View through CrossRef
Research Highlights: To ensure sustainable forest regeneration, it is important to clarify whether new recruits or advanced regenerants are more likely to be stripped. Therefore, the effects of bark stripping on saplings in subalpine forests with abundant saplings should be analyzed by regeneration mode, but there have been no such studies until now. Background and Objectives: I investigated the effects of bark stripping by Cervus nippon on saplings in a subalpine coniferous forest in central Japan to (1) reveal differences in bark stripping between new recruits and advanced regenerants and (2) clarify the factors affecting survivorship. Materials and Methods: A 50 m × 140 m (0.7 ha) plot was set in the old-growth subalpine coniferous forest. All trees in the plot that were ≥2 m in height were tagged, identified to species, measured diameter at breast height and recorded bark stripping by deer. These trees and new recruits were counted and measured in 2005, 2007, 2012, and 2017. I compared saplings recruited in 2007, 2012, and 2017 (“new recruits”) with existing saplings of the same size (“advanced regenerants”). Results: The density of new recruits of Abies mariesii and Tsuga diversifolia increased, whereas that of Abies veitchii decreased. The proportion of stripped saplings was greater in new recruits than in advanced regenerants, significantly so in A. veitchii, which also had the highest maximum bark stripping ratio. Factors affecting the survivorships applied by the regression tree analysis were the maximum stripping ratio of stems for the two Abies species and the initial size for the T. diversifolia. Conclusions: Bark stripping by deer was more intensive on new recruits than on advanced regenerants in a subalpine forest, and regeneration in canopy gaps might fail because of intensive bark stripping in areas overabundant in deer.
Title: Bark Stripping by Deer Was More Intensive on New Recruits than on Advanced Regenerants in a Subalpine Forest
Description:
Research Highlights: To ensure sustainable forest regeneration, it is important to clarify whether new recruits or advanced regenerants are more likely to be stripped.
Therefore, the effects of bark stripping on saplings in subalpine forests with abundant saplings should be analyzed by regeneration mode, but there have been no such studies until now.
Background and Objectives: I investigated the effects of bark stripping by Cervus nippon on saplings in a subalpine coniferous forest in central Japan to (1) reveal differences in bark stripping between new recruits and advanced regenerants and (2) clarify the factors affecting survivorship.
Materials and Methods: A 50 m × 140 m (0.
7 ha) plot was set in the old-growth subalpine coniferous forest.
All trees in the plot that were ≥2 m in height were tagged, identified to species, measured diameter at breast height and recorded bark stripping by deer.
These trees and new recruits were counted and measured in 2005, 2007, 2012, and 2017.
I compared saplings recruited in 2007, 2012, and 2017 (“new recruits”) with existing saplings of the same size (“advanced regenerants”).
Results: The density of new recruits of Abies mariesii and Tsuga diversifolia increased, whereas that of Abies veitchii decreased.
The proportion of stripped saplings was greater in new recruits than in advanced regenerants, significantly so in A.
veitchii, which also had the highest maximum bark stripping ratio.
Factors affecting the survivorships applied by the regression tree analysis were the maximum stripping ratio of stems for the two Abies species and the initial size for the T.
diversifolia.
Conclusions: Bark stripping by deer was more intensive on new recruits than on advanced regenerants in a subalpine forest, and regeneration in canopy gaps might fail because of intensive bark stripping in areas overabundant in deer.
Related Results
Linking White‐Tailed Deer Density, Nutrition, and Vegetation in a Stochastic Environment
Linking White‐Tailed Deer Density, Nutrition, and Vegetation in a Stochastic Environment
ABSTRACT
Density‐dependent behavior underpins white‐tailed deer (
Odocoileus virginianus
) theory and...
Ecological Relationships between Mule Deer and White‐Tailed Deer in Southeastern Arizona
Ecological Relationships between Mule Deer and White‐Tailed Deer in Southeastern Arizona
Niche relationships between the desert mule deer (Odocoileus hemionus crooki) and Coues white—tailed deer (Odocoileus virginianus couesi) were studied in the San Cayetano and Dos C...
Bark Stripping by Deer Disturbs Regeneration in a Larix–Abies Subalpine Forest
Bark Stripping by Deer Disturbs Regeneration in a Larix–Abies Subalpine Forest
Deer can slow the natural succession of forests from light-demanding to shade-tolerant species or even keep forests in an early successional stage. This study examined the effects ...
Efficient Electrochemical Stripping of WC-Co Wear Coatings from Inconel® 718 Substrates
Efficient Electrochemical Stripping of WC-Co Wear Coatings from Inconel® 718 Substrates
A significant cost driver in maintenance operations for aerospace parts is the stripping of functional coatings either due to damage or to allow for periodic inspection/maintenance...
Anaplasma phagocytophilum and Babesia Species of Sympatric Roe Deer (Capreolus capreolus), Fallow Deer (Dama dama), Sika Deer (Cervus nippon) and Red Deer (Cervus elaphus) in Germany
Anaplasma phagocytophilum and Babesia Species of Sympatric Roe Deer (Capreolus capreolus), Fallow Deer (Dama dama), Sika Deer (Cervus nippon) and Red Deer (Cervus elaphus) in Germany
(1) Background: Wild cervids play an important role in transmission cycles of tick-borne pathogens; however, investigations of tick-borne pathogens in sika deer in Germany are lack...
Survival and cause-specific mortality of translocated female mule deer in southern New Mexico, USA
Survival and cause-specific mortality of translocated female mule deer in southern New Mexico, USA
Context
Many mule deer (Odocoileus hemionus) populations in New Mexico have failed to recover from previous population declines, while some populations near urb...
Induced in vitro adaptation for salt tolerance in date palm (Phoenix dactylifera L.) cultivar Khalas
Induced in vitro adaptation for salt tolerance in date palm (Phoenix dactylifera L.) cultivar Khalas
Abstract
Background
Soil salinity causes huge economic losses to agriculture productivity in arid and semiarid areas worldwide. The affected plants face disturbances in osmotic adj...
(ECS 234th) Efficient Electrochemical Stripping of WC-Co Wear Coatings from Inconel® 718 Substrates
(ECS 234th) Efficient Electrochemical Stripping of WC-Co Wear Coatings from Inconel® 718 Substrates
A significant cost driver in maintenance operations for aerospace parts is the stripping of functional coatings either due to damage or to allow for periodic inspection/maintenance...

