globalchange  > 影响、适应和脆弱性
DOI: 10.1016/j.foreco.2016.02.021
Scopus记录号: 2-s2.0-84963828699
论文题名:
A novel causal mechanism for grey squirrel bark stripping: The Calcium Hypothesis
作者: Nichols C.P.; Drewe J.A.; Gill R.; Goode N.; Gregory N.
刊名: Forest Ecology and Management
ISSN:  0378-1127
出版年: 2016
卷: 367
起始页码: 12
结束页码: 20
语种: 英语
英文关键词: Damage ; Deficiency ; Forestry ; Invasive species ; Phloem ; Sciurus carolinensis
Scopus关键词: Calcium ; Crops ; Drug products ; Forestry ; Timber ; Damage ; Deficiency ; Invasive species ; Phloem ; Sciurus carolinensis ; Bark stripping ; abundance ; anticoagulant ; bark ; bone ; calcium ; chemical compound ; forest management ; forestry ; growth rate ; invasive species ; lactation ; phloem ; phosphorus ; rodent ; seasonal variation ; timber ; Animals ; Bark ; Calcium ; Forestry ; Poisons ; Stripping ; United Kingdom ; Sciuridae ; Sciurus carolinensis
英文摘要: Grey squirrels, Sciurus carolinensis, damage trees in the UK by stripping bark and eating the underlying phloem; squirrel motivation for damage is, however, unknown. Damage can result in deterioration of timber quality and a significant economic toll on the forestry industry. Prediction of severe damage followed by targeted killing of squirrels is the current recommended management option. However, the use of warfarin (an anticoagulant poison) is now restricted in the UK and other more humane methods of killing are labour-intensive, so an alternative solution is needed. A better understanding of what motivates grey squirrels to strip bark may enable a preventive approach to be developed. Whilst the bark stripping literature has explored predictive factors affecting the likelihood of damage, causal understanding is lacking. The aim of this review is to introduce the Calcium Hypothesis as a possible explanation for bark stripping, with a view to informing the prevention of damage. The Calcium Hypothesis states that grey squirrels damage trees to ameliorate a calcium deficiency. The main predictive factors of bark stripping behaviour each inform and lend support to the Calcium Hypothesis. Calcium is stored in tree phloem, and damage increases with phloem width, providing squirrels with more calcium per unit area ingested. Calcium levels increase in trees as active growth resumes after winter dormancy, this occurs immediately prior to the main bark stripping season of May-July, and trees growing most vigorously are at increased risk of damage. It is likely grey squirrels also have a requirement for calcium during the bark stripping season. Adult females will be under post-parturition pressures such as lactation, and juveniles will be going through their main period of bone growth, both of which likely represent a requirement for calcium - which supports an observed positive correlation between juvenile abundance and bark stripping. A high autumnal seed crop increases juvenile recruitment the following spring, and could also induce a requirement for calcium to a population due to the high phosphorus to calcium ratio of seeds. To further investigate the hypothesis, the extent to which grey squirrels can utilise calcium oxalate, as calcium occurs in bark, should be determined, and also the extent to which grey squirrels undergo seasonal periods of calcium deficiency. Increasing our causal understanding of bark stripping could inform the future development of preventive measures to aid forest management. © 2016.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/64991
Appears in Collections:影响、适应和脆弱性

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作者单位: Royal Veterinary College, Royal College Street, London, United Kingdom; Forest Research, Alice Holt Lodge, Farnham, Surrey, United Kingdom

Recommended Citation:
Nichols C.P.,Drewe J.A.,Gill R.,et al. A novel causal mechanism for grey squirrel bark stripping: The Calcium Hypothesis[J]. Forest Ecology and Management,2016-01-01,367
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