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11.
圈养林麝母幼关系的初步研究   总被引:8,自引:2,他引:6  
本文研究圈养林麝(Moschusmoshiferusberezovskii)的母幼关系。林麝的母幼关系属于典型的隐蔽者(hider)类型。母幼分开躺卧,相距20.37±11.06m。吮乳时间、母幼联系时间、母幼联系时间/幼麝活动总时间随周龄的增加均呈明显的下降。4周龄前,幼麝躺卧居多,母麝以叫声主动联系幼麝,5周龄开始幼麝独立程度逐渐提高。听觉和视觉通讯是母幼远距离通讯的主要方式。  相似文献   
12.
梅花鹿甲烷能代谢规律的研究   总被引:2,自引:1,他引:1  
李忠宽  张晓明 《兽类学报》1996,16(2):100-104
本文应用KB-1型呼吸测热装置,结合消化、代谢试验,对梅花鹿(Cervusnippon)甲烷能代谢规律进行了研究。结果表明,梅花鹿甲烷能的产生量随其采食量的增加而增加;也随着果食后时间的推移而减少,而且减少的幅度又随采食量的增加而下降;甲烷能的产生量分别占总能食入量、消化能食入量和体增热的6.61%、8.83%和10.88%;甲烷能的产生量随着日粮蛋白质水平的提高而降低,日粮蛋白质水平每提高1个百分点,甲烷能产生量就降低58.58kJ/d;分别以总能食入量(GEI)和干物质食入量(DMI)为自变量所建立的甲烷能(CH4E)估计分别为:CH4E(kJ/d)=0.07CEJ(kJ/d)-101.04(n=12,r=0.944,P<0.01)CH4E(kJ/d)=98.78+1.05DMI(g/d)(n=12,r=0.942,P<0.01)  相似文献   
13.
通过测量12只中国狍(Capreolus capreolus bedfordi)瘤胃壁粘膜标本,作者测定了12只狍胃壁粘膜的表面扩张系数(SEF)。结果表明,中国狍胃壁粘膜的表面扩张系数与德国和波兰狍基本一致,说明中国狍的营养状况和生境的食物条件良好。  相似文献   
14.
王静  孙军平  徐涛  祁军  张远林  张学炎  孟秀祥 《生态学报》2020,40(21):7997-8004
综合采用样线法、粪堆计数法及重复调查法对甘肃省兴隆山国家级自然保护区的野生马麝(Moschus chrysogaster)进行了种群调查,结合生境分析,确定了其种群分布、数量特征及影响因素。结果表明,兴隆山保护区分布有野生马麝(1159±275)头,平均种群密度为(3.51±0.83)头/km2;各植被类型生境中的野生麝种群数量及密度存在差异,灌丛生境分布有70%的野生马麝种群,达(807±170)头,种群密度为(6.49±1.63)头/km2;针叶林种群密度最大,达(8.85±83.25)头/km2,分布有野生麝(123±45)头;针阔混交林分布最少,仅(41±15)头,种群密度为(5.00±1.84)头/km2;人工林生境无野生马麝分布。保护区各植被类型生境中的野生马麝种群分布差异反映了马麝对适宜生境功能的需求,食物、保温和隐蔽性是制约野生马麝冬季分布和种群数量的关键因素。此外,因生境及人为干扰强度的不同,保护区各区域的野生马麝种群分布存在差异。建议通过减少人为干扰、地表植被管理及人工林管理优化等措施增加生境适宜性,促进兴隆山自然保护区野生马麝种群的快速恢复和增长。  相似文献   
15.
在2016年和2017年的5—8月,我们对川西马尔康麝场圈养林麝(Moschus berezovskii)的麝香分泌进行了行为与生理监测,对麝香分泌的各阶段进行了准确判定,记录了泌香启动、泌香盛期开始、泌香盛期终止及泌香结束的时间阶段及持续时间长,分析了林麝麝香分泌的时间阶段与体重和年龄等因素的关系。结果表明,马尔康麝场的雄性林麝平均泌香启动日在6月16日[(167.06±7.75)d,n=141],于6月17日进入泌香盛期[(168.52±7.67)d,n=141],6月21日[(172.17±7.26)d, n=138]泌香活动减弱,至6月25日[(176.27±8.11)d, n=131]泌香结束;雄麝体重与其泌香启动、泌香盛期停止及泌香结束时间呈显著负相关(rPS = -0.234,PPS =0.028;r VSF = -0.215,PVSF = 0.047;r SE = -0.229,PSE = 0.043),即雄麝的体重越大,其泌香越早;各年龄组间的平均泌香时长差异显著(F 17, 113 = 3.482, P = 0.003),其中2岁雄麝平均泌香时长最长[(13.07±2.08)d, n=20],显著高于3岁[(9.38±0.76)d, n=12, P = 0.042]和4岁[(7.80±1.60)d, n=5, P = 0.013]个体;马尔康林麝平均泌香量为(11.85g±0.96)g, (n=114),随泌香时长延长有增加趋势,但不显著(P = 0.854)。基于上述林麝雄体的泌香时间、泌香量与年龄和体重等因素间的关联,可对圈养的林麝个体间的泌香力、泌香量等进行区分和预判,作为圈养林麝驯养生产力优化的依据,并可为圈养林麝优质品系的选育提供参考。  相似文献   
16.
[背景] 呼吸系统疾病是圈养麝常见疾病之一,其中部分由支气管败血波氏杆菌引起,但目前关于林麝源支气管败血波氏杆菌的研究甚少。[目的] 对分离自患病林麝鼻黏液的一株疑似支气管败血波氏杆菌进行分离鉴定和全基因组序列分析,为林麝相关疾病的防治奠定基础。[方法] 将病原菌纯化培养后,通过菌落形态和生化试验初步鉴定病原菌类型,然后进行药敏试验和小鼠致病性试验以观察其耐药和毒力表型,最后对其进行全基因组测序,通过平均核苷酸一致性(Average Nucleotide Identity,ANI)比对在全基因组水平进一步评估物种间的亲缘关系,并进行基因功能注释和遗传进化分析。[结果] 该病原菌经ANI分类属于经典波氏杆菌亚种,结合菌落形态和生化结果综合鉴定为支气管败血波氏杆菌,菌株命名为FMDBb1,药敏表型显示其对林可霉素、利福平及大多数β-内酰胺类抗生素耐药,对小鼠的半数致死量为8.55×106 CFU。全基因组测序显示该菌基因组大小为5 133 936 bp,基因功能注释显示其拥有强代谢能力,基因组内检测到65个经典波氏杆菌毒力因子,以及1个粉霉素和1个利福平的靶向耐药基因,同时发现19个插入序列和1个噬菌体区域的存在。序列类型为ST33,克隆复合体类型为CC6,管家基因联合建树分析显示与分离于韩国短毛猫的KVNON-570株相似性最高。[结论] 研究分离了林麝源支气管败血波氏杆菌并对其进行了全基因组测序及分析,为该病原菌感染的防治提供了宝贵的信息。  相似文献   
17.
刘艳华  牛莹莹  周绍春  张子栋  梁卓  杨娇  鞠丹 《生态学报》2021,41(17):6913-6923
在动物生境研究中,移动生境和卧息生境是生境研究的焦点。开展移动生境和卧息生境选择,并在此基础上进行生境评价,有利于深入了解动物对移动和卧息生境条件的需求,制定科学合理的栖息地保护计划。以东北虎(Panthera tigris altaica)的主要猎物物种之一-狍(Capreolus pygargus)为研究对象,于2017-2019年冬季积雪覆盖期在老爷岭南部通过随机布设28个大样方和84条用于足迹链跟踪的样线收集狍的移动点和卧息点信息,再结合近年来收集的东北虎出现点,利用广义可加模型(GAM)和最大熵模型(MaxEnt)进行狍移动、卧息生境选择及评价研究。移动生境选择研究表明,狍在移动的过程中偏好选择坡度小、距农田距离>500 m、远离道路、居民点和低海拔或较高海拔的区域;移动生境评价分析表明,移动适宜和次适宜生境面积之和为1318.16 km2,占研究区域面积的51.28%,当加入虎活动点影响因子后,狍移动适宜和次适宜生境面积之和为901.52 km2,适宜和次适宜生境面积之和减少了31.61%。狍卧息生境选择研究表明,水源、农田、道路和雪深是影响狍卧息的关键因素,其中雪深对狍卧息生境选择的贡献率达到70.13%;卧息生境评价表明,卧息适宜和次适宜生境面积之和为1243.77 km2,占研究区域面积的48.39%,当加入虎出现点因子后,适宜生境和次适宜生境面积之和减少了61.00%,仅为485.02 km2。研究认为,虎的出现对狍移动和卧息生境选择均产生影响,虎的活动及捕食行为可能会减少狍的活动范围和频次,狍远离虎活动区域卧息休息,压缩了狍适宜卧息的空间。  相似文献   
18.
Understanding how landscape change influences the distribution and densities of species, and the consequences of these changes, is a central question in modern ecology. The distribution of white-tailed deer (Odocoileus virginianus) is expanding across North America, and in some areas, this pattern has led to an increase in predators and consequently higher predation rates on woodland caribou (Rangifer tarandus caribou)—an alternate prey species that is declining across western Canada. Understanding the factors influencing deer distribution has therefore become important for effective conservation of caribou in Canada. Changing climate and anthropogenic landscape alteration are hypothesized to facilitate white-tailed deer expansion. Yet, climate and habitat alteration are spatiotemporally correlated, making these factors difficult to isolate. Our study evaluates the relative effects of snow conditions and human-modified habitat (habitat alteration) across space on white-tailed deer presence and relative density. We modeled deer response to snow depth and anthropogenic habitat alteration across a large latitudinal gradient (49° to 60°) in Alberta, Canada, using motion-sensitive camera data collected in winter and spring from 2015 to 2019. Deer distribution in winter and spring were best explained by models including both snow depth and habitat alteration. Sites with shallower snow had higher deer presence regardless of latitude. Increased habitat alteration increased deer presence in the northern portion of the study area only. Winter deer density was best explained by snow depth only, whereas spring density was best explained by both habitat alteration and the previous winter's snow depth. Our results suggest that limiting future habitat alteration or restoring habitat can alter deer distribution, thereby potentially slowing or reversing expansion, but that climate plays a significant role beyond what managers can influence. © 2020 The Wildlife Society.  相似文献   
19.
Landscape features influence wildlife movements across spatial scales and have the potential to influence the spread of disease. Chronic wasting disease (CWD) is a fatal prion disease affecting members of the family Cervidae, particularly white-tailed deer (Odocoileus virginianus), and the first positive CWD case in a wild deer in Ohio, USA, was recorded in 2020. Landscape genetics approaches are increasingly used to better understand potential pathways for CWD spread in white-tailed deer, but little is known about genetic structure of white-tailed deer in Ohio. The objectives of our study were to evaluate spatial genetic structure in white-tailed deer across Ohio and compare the support for isolation by distance (IBD) and isolation by landscape resistance (IBR) models in explaining this structure. We collected genetic data from 619 individual deer from 24 counties across Ohio during 2007–2009. We used microsatellite genotypes from 619 individuals genotyped at 11 loci and haplotypes from a 547-base pair fragment of the mitochondrial DNA control region. We used spatial and non-spatial genetic clustering tests to evaluate genetic structure in both types of genetic data and empirically optimized landscape resistance surfaces to compare IBD and IBR using microsatellite data. Non-spatial genetic clustering tests failed to detect spatial genetic structure, whereas spatial genetic clustering tests indicated subtle spatial genetic structure. The IBD model consistently outperformed IBR models that included land cover, traffic volume, and streams. Our results indicated widespread genetic connectivity of white-tailed deer across Ohio and negligible effects of landscape features. These patterns likely reflect some combination of minimal resistive effects of landscape features on white-tail deer movement in Ohio and the effects of regional recolonization or translocation. We encourage continued CWD surveillance in Ohio, particularly in the proximity of confirmed cases. © 2021 The Wildlife Society. This article has been contributed to by US Government employees and their work is in the public domain in the USA.  相似文献   
20.
Free-roaming equids (i.e., feral horses [Equus caballus] and burros [Equus asinus]) are widely distributed and locally abundant across the rangelands of the western United States. The 1971 Wild Free Roaming Horse and Burro Act (WFRHBA) gave the Bureau of Land Management (BLM) and United States Forest Service (USFS) the legal authority to manage these animals on designated public lands. To fulfill this responsibility, federal agencies established an Appropriate Management Level (AML), defined as the number of horses or burros that can be sustained on a given management unit under prevailing environmental conditions and land uses. Although the WFRHBA specifies that feral equids must be managed in ecological balance with other land uses, including conservation of native wildlife, population control measures such as gathers, contraception, and adoptions have failed to keep pace with intrinsic growth rates. Over 80% of federally managed herds currently exceed prescribed population levels, making the potential for competition between native ungulates and feral equids a growing concern among state wildlife agencies. Mule deer (Odocoileus hemionus), pronghorn (Antilocapra americana), elk (Cervus canadensis), and bighorn sheep (Ovis canadensis) are of ecological and economic value to the states where they occur, and all exhibit some degree of distributional, habitat, or dietary overlap with horses or burros. Notwithstanding the scale of the problem, to date there have been no range-wide assessments of competition potential among native and feral ungulates for space, forage, or water. To address this need, we compiled demographic, jurisdictional, and species occurrence data collected from 2010–2019 by federal and state agencies. We used these data to map the distributions of 4 native ungulate species across federal equid management units (FEMUS) in 10 western states (n = 174). We then made within-state rankings of the 50 units that were ≥2 times over AML and encompassed ≥3 native ungulates. Collectively, FEMUs covered approximately 225,000 km2, representing 18% of all BLM and USFS lands in affected states. Each FEMU supported ≥1 native ungulate and 14% contained all 4. The degree of overlap between native and feral species varied by state, ranging from <1% for mule deer in Montana, to 40% for bighorn sheep in Nevada. Oregon had the largest proportion of units that supported all 4 native ungulates (58%), whereas Montana and New Mexico had the fewest equids, but all populations were over target densities. Despite the perception that the problem of equid abundance is limited to the Great Basin states, high intrinsic growth rates and social constraints on management practices suggest all affected states should monitor range conditions and native ungulate demography in areas where forage and water resources are limited and expanding equid populations are a concern. © 2021 The Wildlife Society.  相似文献   
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