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1.
行为谱是动物行为学研究的基础。大熊猫(Ailuropoda melanoleuca)是生物多样性保护中的旗舰物种,其行为生态的研究备受关注,然而由于大熊猫数量稀少且警惕性强,很难在野外进行观察,有关其行为谱等基础行为研究结果主要是基于圈养大熊猫的观察研究。为了促进野生大熊猫行为学的深入研究,2015年1月—2016年6月,2018年8月— 2019年4月我们在卧龙自然保护区基于红外相机图片和视频数据,利用PAE编码系统建立了野生大熊猫行为谱和PAE编码系统。研究共计在14种环境背景中记录到大熊猫12种姿势、52种动作、56种行为。一方面,本研究结果基本涵盖了大熊猫的主要行为,并发现了一些未在圈养大熊猫行为谱中记录到的行为,如野生大熊猫利用植物的茎进行自我除雪行为;另一方面丰富了观察大熊猫行为的环境因素。以上结果为深入研究野生大熊猫行为生态学提供了基础信息。    相似文献   

2.
大熊猫的刻板行为及其矫正对策——丰富圈养环境举措   总被引:2,自引:0,他引:2  
杨春花  王小明 《四川动物》2006,25(3):529-532
由于生活环境单一、活动空间狭小等阻碍了正常行为的表达,圈养大熊猫经常发生一种谓之“刻板行为”的机械、呆板行为。所谓刻板行为,是指圈养大熊猫无明显目的的、不变的、以固定频率反复重复的无任何功能效果的简单行为。丰富圈养环境举措(环境富集)是矫正刻板行为的一种重要的行之有效的对策。介绍了圈养大熊猫刻板行为的表现、特点、发生机制及富集化矫正对策。  相似文献   

3.
周小平  谭迎春  宋仕贤  王鹏彦  张和民 《四川动物》2005,24(2):143-146,F002
2003年7月8日~2004年7月7日,用聚焦动物法和点取样法对卧龙自然保护区首次进行放归前期野化培训的两岁龄大熊猫双胞胎之一“祥祥”,及其对照个体大熊猫双胞胎之二“福福”(生活在传统兽舍之中)的行为进行观察,并对观察数据进行定性分析。X^2适合度检验表明:1.在不同的环境下,大熊猫的行为存在明显差异。表现在:取食、机械行为、人为干扰和寻食行为所占时间不同;人为活动对大熊猫行为的影响不同。2.行为多样性指数不同。3.在不同环境下,大熊猫的生态习性也是有差异的。表现在以下两个方面:一是对不同竹子的利用;二是对不同区域的利用。培训结果表明,影响将来放归的重要因素是圈养条件下形成的机械行为和对人及人工食物的依赖性。因此,在将圈养出生的大熊猫真正放归野外时,必须考虑这些因素的影响。  相似文献   

4.
在发情期,对动物行为时间分配和活动节律的认识将有助于濒危动物繁育质量的提高。大熊猫为季节性单次发情动物,雄性发情期可持续30 d左右,而雌性大熊猫为几天至十几天,高峰期仅为1~3 d,且有与雄性不同步发情的现象。因此,进行发情期行为学方面的研究则显得尤为重要。采用瞬时扫描取样法和全事件记录法,于2013年3月1日—4月30日对成都大熊猫繁育研究基地的8只发情期大熊猫进行行为时间变化和活动节律研究,每只每周记录2 d数据。结果表明:休息行为是发情期最主要的行为方式(雄性约46%,雌性约53%),其次是摄食和运动行为,而探究、求适和发情行为则较少,发情行为主要出现在00∶00—03∶00、09∶00—11∶00和15∶00—17∶00等3个时段,可配对交配;发情期雌雄个体在休息、求适、运动和发情行为上的差异有高度统计学意义(P<0.01),在探究行为上的差异有统计学意义(P<0.05),而在摄食行为上的差异则无统计学意义;且发情、探究行为与运动行为呈显著正相关(P<0.01)。对发情期圈养大熊猫昼夜活动行为的研究将为大熊猫的人工繁育及其配种提供行为学方面的理论依据。  相似文献   

5.
在过去34年的圈养大熊猫种群保护工作中,我们成功建立了全球最大的大熊猫精子库,目前已保存50只大熊猫个体总计7 000余支细管冷冻精液(冻精)。冷冻精液一方面可以使物种的遗传资源得到长久保存,另一方面可以通过人工授精的方式促进种群繁育。但是,圈养大熊猫冷冻精液对其种群遗传多样性的作用尚未有明确报道。本研究首先根据成都大熊猫繁育研究基地2000—2014年冷冻精液人工授精数据,对比分析了冻精人工授精个体和圈养种群的遗传多样性。结果显示,冻精人工授精个体遗传多样性均高于同年圈养种群的平均遗传多样性,表明在繁殖年份中冻精人工授精可以显著提高圈养大熊猫种群的遗传多样性。统计精子库中所有冻精个体的平均血缘系数并与圈养种群进行对比分析,探究冷冻精液对圈养种群遗传多样性的潜在作用。结果显示,精子库中有21只已死亡个体的精液,其中有66.67%的个体平均血缘系数低于圈养种群;有14只20岁以上个体的精液,其中有50.00%的个体平均血缘系数低于圈养种群;另有15只20岁以下个体的精液,其中有53.33%的个体平均血缘系数低于圈养种群,表明冷冻精液对圈养种群遗传多样性的保护具有重要价值。综上所述,冷冻精液不但有效保存了大熊猫遗传资源,而且在保护圈养种群遗传多样性方面具有积极的促进作用。  相似文献   

6.
传统圈养和半自然散放环境亚成年大熊猫的行为差异   总被引:6,自引:0,他引:6  
2001年7月20日至8月20日,在四川卧龙自然保护区中国保护大熊猫研究中心,采用连续观察法记录和分析了传统圈养和半自然散放环境下亚成年大熊猫(分别为3和9只)的几种行为的持续时间和发生次数。传统圈养环境亚成年大熊猫探究行为的持续时间、标记行为的频次显著多于半自然散放环境下的个体;刻板行为的持续时间有增加的趋势,但无显著差异。刻板行为的持续时间与标记行为的频次和探究行为的持续时间均呈显著正相关。表明圈养环境的改善有助于亚成年大熊猫探究和标记行为的明显减少。  相似文献   

7.
发情率低是圈养大熊猫Ailuropoda melanoleuca饲养的难题之一,也是制约圈养大熊猫繁育的重要因素。近年来,随着大熊猫圈养技术的不断进步,圈养大熊猫的发情率有了大幅提高,但并未达到特别高的水平。对中国保护大熊猫研究中心2006—2012年参与繁殖计划的圈养成年雌性大熊猫种群的发情率进行统计发现,2009—2012年每年雌性大熊猫的发情率高达90%以上,较2006—2008年的发情率有显著提高。2006—2012年,该大熊猫种群的饲养和管理模式、食物结构都未变化,但从2009年起圈舍环境有明显变化。经分析,该种群发情率的变化与圈舍面积、圈舍地形、圈舍植被覆盖率和植物种类等因素变化有关。本研究为提高圈养大熊猫的发情率从改善大熊猫圈舍条件的角度提供了有效的参考。  相似文献   

8.
空间属性是动物行为的重要特征,也是行为生态学研究中必须要面对的难题之一。地理信息系统(Geographic Information System,GIS)具有强大的空间分析功能,它在动物行为生态学研究中得到了越来越广泛的应用,如生境选择、领域分析、迁徙路线、活动节律等。本文较系统地阐述了GIS的原理以及在行为生态学研究中所涉及的基本概念和原理,对近年来利用GIS进行的行为生态学研究做了回顾和总结,并对其未来的发展进行了展望。  相似文献   

9.
本文记录一只因环境、饲料等因素改变而2001年春季未能发情的雌性大熊猫,于秋季9月中旬发情,并与另一只同期发情的公熊猫自然交配,当年冬季12月17日成功产仔的这一世界首例圈养大熊猫秋季发情配种的行为表现和配种经过,并对该大熊猫秋季发情的原因作了分析。  相似文献   

10.
圈养大熊猫的繁殖特性和生命表   总被引:3,自引:0,他引:3  
通过对最大的大熊猫(Ailuropoda melanoleuca)圈养种群——中国保护大熊猫研究中心的圈养种群的研究,总结了圈养大熊猫的繁殖生物学特性,编制了大熊猫的生命表。大熊猫是季节性繁殖的动物,每年春季3~4月发情交配,8月(30.49%)和9月(48.88%)产仔,每胎平均产仔1.5只,圈养繁殖大熊猫的雌雄比为1.11。大熊猫的妊娠期和幼兽的初生体重变化很大,分别平均为139.8天和142.6g。性成熟的年龄,雌性是5.7±1.1岁,雄性是5.8±0.58岁。根据圈养大熊猫的生命表计算出圈养种群的净增长率R0为0.209,世代周期T为9.187年,内禀增长率r为-0.170,周期增长率λ为0.844。  相似文献   

11.
Despite the functional and phyletic ubiquity of highly polymorphic genetic recognition systems, the evolution and maintenance of these remarkable loci remain an empirical and theoretical puzzle. Many clonal invertebrates use polymorphic genetic recognition systems to discriminate kin from unrelated individuals during behavioral interactions that mediate competition for space. Space competition may have been a selective force promoting the evolution of highly polymorphic recognition systems, or preexisting polymorphic loci may have been coopted for the purpose of mediating space competition. Ascidian species in the family Botryllidae have an allorecognition system in which fusion or rejection between neighboring colonies is controlled by allele-sharing at a single, highly polymorphic locus. The behavioral sequence involved in allorecognition varies in a species-specific fashion with some species requiring extensive intercolony tissue integration prior to the allorecognition response, while other species contact opposing colonies at only a few points on the outer surface before resolving space conflicts. Due to an apparent species-specific continuum of behavioral variation in the degree of intercolony tissue integration required for allorecognition, this system lends itself to a phylogenetic analysis of the evolution of an allorecognition system. We constructed a molecular phylogeny of the botryllids based on 18S rDNA sequence and mapped allorecognition behavioral variation onto the phylogeny. Our phylogeny shows the basal allorecognition condition for the group is the most internal form of the recognition reaction. More derived species show progressively more external allorecognition responses, and in some cases loss of some features of internal function. We suggest that external allorecognition appears to be a secondary function of a polymorphic discriminatory system that was already in place due to other selective pressures such as gamete, pathogen, or developmental cell lineage recognition.  相似文献   

12.
Ecologists have used Global Positioning Systems (GPS) to track animals for 30 years. Issues today include logging frequency and precision in estimating space use and travel distances, as well as battery life and cost. We developed a low‐cost (~US$125), open‐source GPS datalogger based on Arduino. To test the system, we collected positions at 20‐s intervals for several 1‐week durations from cattle and sheep on rangeland in North Dakota. We tested two questions of broad interest to ecologists who use GPS collars to track animal movements: (1) How closely do collared animals cluster in their herd? (2) How well do different logging patterns estimate patch occupancy and total daily distance traveled? Tested logging patterns included regular logging (one position every 5 or 10 min), and burst logging (positions recorded at 20‐s intervals for 5 or 10 min per hour followed by a sleep period). Collared sheep within the same pasture spent 75% of daytime periods within 51 m of each other (mean = 42 m); collared cattle were within 111 m (mean = 76 m). In our comparison of how well different logging patterns estimate space use versus constant logging, the proportion of positions recorded in 1‐ and 16‐ha patches differed by 2%–3% for burst logging and 1% for regular logging. Although all logging patterns underestimated total daily distance traveled, underestimations were corrected by multiplying estimations by regression coefficients estimated by maximum likelihood. Burst logging can extend battery life by a factor of 7. We conclude that a minimum of two collars programmed with burst logging robustly estimate patch use and spatial distribution of grazing livestock herds. Research questions that require accurately estimating travel of individual animals, however, are probably best addressed with regular logging intervals and will thus have greater battery demands than spatial occupancy questions across all GPS datalogger systems.  相似文献   

13.
在城市森林及其他生态景观的研究与规划中,结合特定物种(使用者)行为的景观连接度已得到业界越来越多的重视。为了给基于物种行为的景观连接度提供新的建模和分析理念,拟将建筑及城市规划学科中一种可靠的人工智能语言通过反规划思想引入景观生态学领域,通过模拟演绎展示空间句法在研究中的优越性。鉴于鸟类边缘种的栖息地景观构型特点,将空间句法轴线图借用于基于鸟类边缘种行为的景观连接度研究。首先介绍了传统景观连接度的量化方法及物种迁移模型,通过文献综述归纳出此类研究方法的局限性;接着,由反规划启蒙提出将空间句法模型引入"边缘种-栖息地"互动研究的设想;最后,以贺州城市森林规划为例,利用空间句法轴线图探究基于鸟类边缘种行为的景观连接度。模拟实验旨在展示轴线图模型能反映物种对不同景观元素非等权重的选择行为,并可根据物种邻域感知信息预测其复合尺度的行为。  相似文献   

14.
Behavioral and physiological ecologists have long been interested in explaining the causes and consequences of trait variation, with a focus on individual differences in mean values. However, the majority of phenotypic variation typically occurs within individuals, rather than among individuals (as indicated by average repeatability being less than 0.5). Recent studies have further shown that individuals can also differ in the magnitude of variation that is unexplained by individual variation or environmental factors (i.e., residual variation). The significance of residual variation, or why individuals differ, is largely unexplained, but is important from evolutionary, methodological, and statistical perspectives. Here, we broadly reviewed literature on individual variation in behavior and physiology, and located 39 datasets with sufficient repeated measures to evaluate individual differences in residual variance. We then analyzed these datasets using methods that permit direct comparisons of parameters across studies. This revealed substantial and widespread individual differences in residual variance. The magnitude of individual variation appeared larger in behavioral traits than in physiological traits, and heterogeneity was greater in more controlled situations. We discuss potential ecological and evolutionary implications of individual differences in residual variance and suggest productive future research directions.  相似文献   

15.
According to recent studies on animal personalities, the level of behavioral plasticity, which can be viewed as the slope of the behavioral reaction norm, varies among individuals, populations, and species. Still, it is conceptually unclear how the interaction between environmental variation and variation in animal cognition affect the evolution of behavioral plasticity and expression of animal personalities. Here, we (1) use literature to review how environmental variation and individual variation in cognition explain population and individual level expression of behavioral plasticity and (2) draw together empirically yet nontested, conceptual framework to clarify how these factors affect the evolution and expression of individually consistent behavior in nature. The framework is based on simple principles: first, information acquisition requires cognition that is inherently costly to build and maintain. Second, individual differences in animal cognition affect the differences in behavioral flexibility, i.e. the variance around the mean of the behavioral reaction norm, which defines plasticity. Third, along the lines of the evolution of cognition, we predict that environments with moderate variation favor behavioral flexibility. This occurs since in those environments costs of cognition are covered by being able to recognize and use information effectively. Similarly, nonflexible, stereotypic behaviors may be favored in environments that are either invariable or highly variable, since in those environments cognition does not give any benefits to cover the costs or cognition is not able to keep up with environmental change, respectively. If behavioral plasticity develops in response to increasing environmental variability, plasticity should dominate in environments that are moderately variable, and expression of animal personalities and behavioral syndromes may differ between environments. We give suggestions how to test our hypothesis and propose improvements to current behavioral testing protocols in the field of animal personality.  相似文献   

16.
Behavioral innovation is a key process for successful colonization of new habitat types. However, it is costly due to the necessary cognitive and neural demands and typically connected to ecological generalism. Therefore, loss of behavioral innovativeness is predicted following colonization of new, simple, and invariable environments. We tested this prediction by studying foraging innovativeness in the freshwater isopod Asellus aquaticus. We sampled its populations along the route of colonizing a thermokarstic water‐filled cave (simple, stable habitat with only bacterial mats as food) from surface habitats (variable environment, wide variety of food). The studied cave population separated from the surface populations at least 60,000 years ago. Animals were tested both with familiar and novel food types (cave food: bacterial mats; surface food: decaying leaves). Irrespective of food type, cave individuals were more likely to feed than surface individuals. Further, animals from all populations fed longer on leaves than on bacteria, even though leaves were novel for the cave animals. Our results support that cave A. aquaticus did not lose the ability to use the ancestral (surface) food type after adapting to a simple, stable, and highly specialized habitat.  相似文献   

17.
Trait consistency over time is one of the cornerstones of animal personality. Behavioral syndromes are the result of correlations between behaviors. While repeatability in behavior is not a requirement for behavioral syndromes, the two concepts studied together provide a more comprehensive understanding of how behavior can change over ontogeny. The roles of ontogenetic processes in the emergence of personality and behavioral syndromes have received much individual attention. However, the characterization of both individual trait consistency and behavioral syndromes across both sexes, as in our study, has been relatively rare. Ontogeny refers to changes that occur from conception to maturation, and juveniles might be expected to undergo different selection pressures than sexually mature individuals and also will experience profound changes in hormones, morphology, and environment during this period. In this study, we test for behavioral trait consistency and behavioral syndromes across six time points during ontogenetic development in the desert funnel‐web spider (Agelenopsis lisa). Our results indicate behavioral traits generally lack consistency (repeatability) within life stages and across ontogeny. However, penultimate males and mature females do exhibit noticeable mean‐level changes, with greater aggressive responses toward prey, shorter latencies to explore their environment and in the exhibition of risk‐averse responses to predatory cues. These traits also show high repeatability. Some trait correlations do exist as well. In particular, a strong correlation between aggressiveness toward prey and exploration factors is observed in mature males. However, because correlations among these factors are unstable across ontogeny and vary in strength over time, we conclude that behavioral syndromes do not exist in this species. Nevertheless, our results indicate that increased consistency, increasing average trait values, and varying correlations between traits may coincide with developmentally important changes associated with sexual maturation, albeit at different time points in males and females. This period of the life cycle merits systematic examination across taxa.  相似文献   

18.
Behavioral and movement ecology of broods are among the most poorly understood aspects of wild turkey (Meleagris gallopavo) reproductive ecology. Recent declines in wild turkey productivity throughout the southeastern United States necessitate comprehensive evaluations of brood ecology across multiple spatial scales. We captured and marked 408 female wild turkeys with global positioning system (GPS)-transmitters across 9 pine (Pinus spp.)-dominated study sites in the southeastern United States during 2014–2019. We evaluated various aspects of the behavioral and movement ecology of 94 brood-rearing females until brood failure or 28 days after hatch (i.e., when poults are classified as juveniles). We found that 34 (36.2%) females had broods (≥1 poult) survive to 28 days after hatch. Broods moved >500 m away from nest sites the day after hatching, and then moved progressively farther away from nest sites over time. Daily movements increased markedly the first 3 days after hatching, and broods moved >1,000 m/day on average thereafter. Females roosted broods an average of 202 m away from nest sites the first night after hatching, but distances between consecutive ground or tree roosts were variable thereafter. Daily core areas increased from 0.8 ha the day of hatch to 4.6 ha by day 28, and range sizes increased from 6.9 ha to 27.9 ha by day 28. Broods tended to consistently select open land cover types, whereas selection for other land cover types varied temporally after hatch day. Broods spent 89% of their time foraging. Predicted daily survival for broods decreased rapidly with increasing distance moved during the initial 3 days after hatching and showed less variation during the subsequent 2 weeks post-hatch. Our findings parallel previous researchers noting that the most critical period for brood survival is the first week after hatch day. Previous researchers have attempted to identify vegetative communities used by broods under the assumption that these communities are a primary factor influencing brood success; however, our results suggest that brood survival is influenced by behavioral decisions related to movements during early brooding periods. © 2020 The Wildlife Society.  相似文献   

19.
Aggregations are widespread across the animal kingdom, yet the underlying proximate and ultimate causes are still largely unknown. An ideal system to investigate this simple, social behavior is the pine sawfly genus Neodiprion, which is experimentally tractable and exhibits interspecific variation in larval gregariousness. To assess intraspecific variation in this trait, we characterized aggregative tendency within a single widespread species, the redheaded pine sawfly (N. lecontei). To do so, we developed a quantitative assay in which we measured interindividual distances over a 90‐min video. This assay revealed minimal behavioral differences: (1) between early‐feeding and late‐feeding larval instars, (2) among larvae derived from different latitudes, and (3) between groups composed of kin and those composed of nonkin. Together, these results suggest that, during the larval feeding period, the benefits individuals derive from aggregating outweigh the costs and that this cost‐to‐benefit ratio does not vary dramatically across space (geography) or ontogeny (developmental stage). In contrast to the feeding larvae, our assay revealed a striking reduction in gregariousness following the final larval molt in N. lecontei. We also found some intriguing interspecific variation: While N. lecontei and N. maurus feeding larvae exhibit significant aggregative tendencies, feeding N. compar larvae do not aggregate at all. These results set the stage for future work investigating the proximate and ultimate mechanisms underlying developmental and interspecific variation in larval gregariousness across Neodiprion.  相似文献   

20.
Spiders are useful models for testing different hypotheses and methodologies relating to animal personality and behavioral syndromes because they show a range of behavioral types and unique physiological traits (e.g., silk and venom) that are not observed in many other animals. These characteristics allow for a unique understanding of how physiology, behavioral plasticity, and personality interact across different contexts to affect spider''s individual fitness and survival. However, the relative effect of extrinsic factors on physiological traits (silk, venom, and neurohormones) that play an important role in spider survival, and which may impact personality, has received less attention. The goal of this review is to explore how the environment, experience, ontogeny, and physiology interact to affect spider personality types across different contexts. We highlight physiological traits, such as neurohormones, and unique spider biochemical weapons, namely silks and venoms, to explore how the use of these traits might, or might not, be constrained or limited by particular behavioral types. We argue that, to develop a comprehensive understanding of the flexibility and persistence of specific behavioral types in spiders, it is necessary to incorporate these underlying mechanisms into a synthesized whole, alongside other extrinsic and intrinsic factors.  相似文献   

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