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Winter ecological energetics of blue grouse.

机译:蓝色松鸡的冬季生态能量学。

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摘要

This study investigated relationships between blue grouse (Dendragapus obscurus) winter habitat and blue grouse adaptive strategies and overwinter survival. Blue grouse metabolism, physical characteristics of use-trees and roost sites, microclimatic parameters at roost sites, daily winter energy costs, and specific energy-saving behaviors were studied. Blue grouse have a relatively low standard metabolic rate (SMR; 0.835 ml O{dollar}sb2{dollar} {dollar}cdot{dollar} g{dollar}sp{lcub}-1{rcub}{dollar} {dollar}cdot{dollar} hr{dollar}sp{lcub}-1{rcub}{dollar}) and lower critical temperature in comparison to other northern tetraonids. Metabolic rate did not significantly increase from {dollar}-5{dollar} to {dollar}-20{dollar} C. Ambient temperature (T{dollar}sb{lcub}rm a{rcub}{dollar}) and the square root of wind speed were significantly correlated with metabolic rate.; Blue grouse selectively roosted in the largest Douglas-firs (Pseudotsuga menziesii) and subalpine firs (Abies lasiocarpa) during the day and night, respectively. All roost sites were typically adjacent to tree trunks in the lower 2/3 of trees. Nocturnal roosts provided greater canopy coverage and were located in continuous stands more often than diurnal roosts. Wind speeds were reduced by 63 and 85% at diurnal and nocturnal roosts, respectively. Douglas-firs provided exposure to solar radiation, protection from wind, and a food source during the day. Subalpine firs increased protection from the wind and provided near maximum canopy coverage at night. Nocturnal subalpine roost sites provided a 10% net energy savings in comparison to diurnal Douglas-fir roost sites. The average T{dollar}sb{lcub}rm a{rcub}{dollar} at the study area was within the thermoneutral zone of blue grouse.; The average field metabolic rate (FMR) of blue grouse measured with doubly-labeled water was about 1.4 times SMR, and was not influenced by weather. The proportion of FMR due to basal metabolism was twice that commonly assumed for other species, indicating the importance of microhabitat selection and relative inactivity by blue grouse in minimizing energy costs. Other energy saving behaviors included sunning, snow roosting, and walking uphill instead of flying. FMR measures (657 kJ {dollar}cdot{dollar} d{dollar}sp{lcub}-1{rcub}{dollar}) were within 12% of the energy costs estimated from average microclimatic values, and within 5% of the energy assimilation by captive blue grouse.; Habitat selection by blue grouse, particularly microhabitat selection of roost sites, reflects active choices designed to minimize energy costs imposed by winter weather. This selection indicates the importance of Douglas-fir and subalpine fir for overwinter survival.
机译:本研究调查了蓝色松鸡(Dendragapus obscurus)冬季栖息地与蓝色松鸡的适应策略和越冬存活之间的关系。研究了蓝松鸡的新陈代谢,使用树和栖息地的物理特性,栖息地的微气候参数,冬季日常能源成本以及特定的节能行为。蓝色松鸡的标准代谢率相对较低(SMR; 0.835毫升O {dollar} sb2 {dollar} {dollar} cdot {dollar} g {dollar} sp {lcub} -1 {rcub} {dollar} {dollar} cdot { } hr {dollar} sp {lcub} -1 {rcub} {dollar})和比其他北部四面体更低的临界温度。代谢率没有从{dollar} -5 {dollar}升高到{dollar} -20 {dollar}C。环境温度(T {dollar} sb {lcub} rm a {rcub} {dollar})和平方根风速与代谢率显着相关。白天和晚上,蓝松鸡选择性地栖息在最大的花旗松(Pseudotsuga menziesii)和亚高山冷杉(Abies lasiocarpa)中。通常,所有栖息地都位于树下部2/3的树干附近。夜间栖息地提供的冠层覆盖范围更大,并且比昼夜栖息地更常位于连续的林分中。白天和夜间栖息地的风速分别降低了63%和85%。道格拉斯冷杉白天提供阳光照射,防风和食物来源。亚高山冷杉增强了防风能力,并在夜间提供了接近最大的树冠覆盖率。与昼夜的道格拉斯冷杉栖息地相比,夜间亚高山栖息地可节省10%的净能源。研究区域的平均T {dollar} sb {lcub} rma {rcub} {dollar}在蓝色松鸡的热中性区内。用双标水测量的蓝色松鸡的平均田间代谢率(FMR)约为SMR的1.4倍,并且不受天气影响。由于基础代谢而引起的FMR比例是其他物种普遍假设的两倍,这表明选择微生境和蓝松鸡的相对无活性在最小化能源成本方面很重要。其他节能行为包括晒黑,栖息在雪地上以及上山而不是飞行。 FMR量度(657 kJ {dot} cdot {dollar} d {dollar} sp {lcub} -1 {rcub} {dollar})在平均微气候值估算的能源成本的12%之内,并且在能源的5%之内被圈养的蓝色松鸡吸收。蓝松鸡的栖息地选择,特别是栖息地的微栖息地选择,反映了旨在减少冬季天气所造成的能源成本的积极选择。这一选择表明花旗松和亚高山冷杉对于越冬生存的重要性。

著录项

  • 作者

    Pekins, Peter Jeffrey.;

  • 作者单位

    Utah State University.;

  • 授予单位 Utah State University.;
  • 学科 Biology General.; Agriculture Forestry and Wildlife.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;森林生物学;
  • 关键词

  • 入库时间 2022-08-17 11:50:48

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