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1.
圈养大熊猫群体间的基因流状况分析   总被引:1,自引:0,他引:1  
圈养群体的遗传管理一个非常重要的手段就是实现不同群体间的基因交流.为了全面评估大熊猫圈养群体间的基因流状况,本研究以卧龙中国大熊猫保护中心的31只圈养大熊猫(简称卧龙群体)和成都大熊猫繁育研究基地与楼观台陕西省珍稀野生动物抢救饲养研究中心的37只圈养大熊猫(简称成都群体,其中楼观台1只)为研究对象,以7个大熊猫微卫星位点为分子标记,发现卧龙群体和成都群体间的遗传分化水平很低(Fst=0.041,P=0.001);尽管整个圈养群体的近交程度较低(Fis=0.026),但是成都群体的近交系数(Fis=0.045)远高于卧龙群体的近交系数(Fis=0.002);谱系分析、贝叶斯分析和系统进化法分析均显示,这两个群体间存在着基因流,但是这种基因流是单向的.此结果提示各个大熊猫饲养单位之间必须实现更多的合作,将大熊猫群体作为一个管理单元进行管理,从而实现更多的基因流.  相似文献   

2.
卧龙圈养大熊猫遗传多样性现状及预测,   总被引:2,自引:0,他引:2  
以中国最大的大熊猫圈养种群—四川卧龙中国大熊猫保护中心的圈养种群为对象,以8个大熊猫微卫星位点为分子标记, 探讨了大熊猫圈养种群的遗传多样性, 并与邛崃野生种群及其他7个濒危物种进行比较。微卫星数据表明, 圈养种群的遗传多样性水平(A=5.5, He =0.620, Ho=0.574) 低于邛崃野生种群(A=9.8,He=0.779,Ho=0.581),但高于其他7 个濒危物种的种群(He=0.13~0.46)。在此数据的基础上对未来100个世代内圈养种群遗传多样性的变化情况做出了预测。结果表明假设种群数量比现在扩大一倍, 经历100个世代后也只会使平均等位基因数少减少0.4。因此继续增加野生个体对保持遗传多样性的意义已经不大, 建议该圈养种群的保护策略应将重点放到制定更有效的繁殖计划以避免近交上。  相似文献   

3.
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   

4.
应用微卫星分型方法进行大熊猫父亲鉴定   总被引:28,自引:2,他引:26  
1979年我们利用水稻花粉单倍体植株的 茎节、幼穗、叶鞘和叶片等组织进行离体培养, 诱导出二倍体植株。  相似文献   

5.
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:9,自引:0,他引:9  
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   

6.
四川小相岭山系大熊猫种群及栖息地调查   总被引:2,自引:0,他引:2  
小相岭山系是现存大熊猫种群数量最少的山系之一。根据全国第3次大熊猫及其栖息地调查结果,小相岭山系大熊猫栖息地分布在石棉、冕宁和九龙三县,栖息地总面积802.04 km2,大熊猫种群数量有32只。大熊猫在3个位于小相岭山系的自然保护区内种群数量和栖息地面积分别为:四川冶勒自然保护区9只,栖息地面积168.01 km2;四川栗子坪自然保护区14只,栖息地面积306.38 km2;四川贡嘎山自然保护区1只,栖息地面积15.19 km2。在3个保护区大熊猫栖息地总面积为489.58 km2,占各山系大熊猫栖息地总面积的61.05%;有大熊猫24只,占大熊猫种群数量的75.0%。小相岭山系大熊猫meta种群栖息地片段化比较严重,它由2个种群和2个孤立分布点组成。南北方向从成都至昆明的108国道以东的种群A有大熊猫13只,栖息地面积263.54 km2, 完整性较好,大熊猫分布比较集中。108国道以西的种群B有大熊猫19只,栖息地面积为538.50 km2,栖息地破碎。该山系大熊猫数量少,栖息地片段化严重,需加强保护。
  相似文献   

7.
Huang Y  Li D  Zhou Y  Zhou Q  Li R  Wang C  Huang Z  Hull V  Zhang H 《Zoo biology》2012,31(5):561-573
Artificial insemination (AI) is an important component of captive breeding programs for endangered species, such as the giant panda. The panda has been the subject of increasingly successful captive breeding programs involving a compilation of assisted breeding techniques, including AI using cryopreserved spermatozoa. AI implementation is currently hampered by a lack of understanding of the factors that may cause failure. We investigated factors influencing the probability of success of AI for 14 giant panda females housed at the China Center for Research and Conservation of the Giant Panda (CCRCGP) inseminated in a total of 20 instances using cryopreserved spermatozoa from 11 males currently residing in 6 different captive breeding institutions. One of the pandas was the oldest giant panda female to ever successfully conceive from AI (20.5 years old). The success of AI was significantly affected by the timing of AI in relationship to both timing of peak urinary estrogen of the female and percent decline in urinary estrogen between the peak level and the first AI attempt. Our results suggest that the window for successful AI in giant pandas may be narrower than previously suspected, although individual differences in rates of decline in urinary estrogen may reflect some degree of variation in this crucial window across females. Our results are consistent with recent research on pandas and other species that demonstrates the efficacy of cryopreserved spermatozoa for AI and highlights the need for more in‐depth analysis of factors related to female physiology that may influence its success. Zoo Biol 31:561‐573, 2012. © 2011 Wiley Periodicals, Inc.  相似文献   

8.
小熊猫是亚洲特有的珍稀濒危动物,目前受到栖息地减少、片断化和人类活动干扰等威胁。中国圈养小熊猫已经有60 多年历史,约55 个机构曾经饲养过小熊猫,现今圈养数量有400 多只,评估小熊猫圈养种群的遗传多样性和遗传结构对科学维持圈养种群和保存遗传种质资源意义重大。本研究利用19 个微卫星座位,对中国境内11 个小熊猫圈养种群的116 只个体进行了遗传多样性评估及遗传结构分析。结果显示11 个种群都具有较高的遗传多样性,平均基因丰富度3.505 ± 1.033 (北京)至4.026 ± 1.219 (冕宁),期望杂合度0.631 ± 0.225(黄山)至0.782 ±0.171 (温岭)。其中福州和无锡种群极显著偏离Hardy-Weinberg 平衡。整个圈养群体内各个种群遗传分化系数为0.055,呈显著分化,表明11 个种群遗传分化水平较高。Bayesian 遗传聚类分析将11 个种群聚为三个遗传簇,与野生种群的遗传聚类结果一致。结论:小熊猫圈养种群与野生种群相比,同样具有较高的遗传多样性。因此,圈养小熊猫遗传管理的重点不再是引进野生个体充实圈养种群,应制订科学的繁殖计划,避免近交,从而维持圈养种群的遗传多样性。  相似文献   

9.
野生大熊猫现状、面临的挑战及展望   总被引:20,自引:0,他引:20  
严旬 《兽类学报》2005,25(4):402-406
截至2003年底,我国野生大熊猫种群数量达1596只,分布在陕西、四川和甘肃3省的45个县境内,总栖息地面积达2304991hm^2。与第2次大熊猫调查相比,野生大熊猫生存状况已得到改善,分布范围扩大、栖息地面积增加、种群数量进一步增长。本文在第3次大熊猫调查的基础上,就野生大熊猫种群及栖息地现状进行了分析,指出未来保护大熊猫所面临的3个方面的挑战,即来自物种自身生物学特性的挑战、栖息地破碎化及隔离小种群未来命运的挑战以及大熊猫保护与社区经济发展需求相冲突的挑战。作者还就我国大熊猫保护前景进行了展望,即自然保护区数量将进一步增加,栖息地状况将进一步改善;种群数量在总体保持稳定的基础上将逐步增长,但局部小种群灭绝风险将加剧;圈养种群将形成能自我维持的种群,圈养个体通过培训将逐步放归到隔离野生小种群中以改变其命运。  相似文献   

10.
圈养大熊猫野化培训期的生境选择特征   总被引:1,自引:0,他引:1  
大熊猫(Ailuropoda melanoleuca)是我国特有的珍稀物种,也是世界上最濒危的野生动物之一。为了将人工繁育的部分大熊猫个体重引入其历史分布区或复壮野生种群,中国保护大熊猫研究中心从2003年开始进行圈养大熊猫的野外放归工作,通过野化培训以提高圈养大熊猫适应和选择野外环境的能力。对野化培训大熊猫"淘淘"的生境选择研究表明:该野化培训大熊猫幼仔经常活动于新笋密度较大的区域[生境与对照:(2.68±1.14)对(1.58±0.66)],却避开成竹密度过大[(9.91±2.51)对(12.18±4.68)]、竹子较高[(4.57±1.09) m对(4.98±0.66) m]以及枯死竹过多[(2.52±0.86)对(3.39±1.33)]的区域;喜欢活动于离水源[(1.59±0.67)对(2.19±0.87)]和隐蔽场所较近[(5.37±2.14) m对(8.35±7.76)m],以及距离乔木较远[(3.09±0.69) m对(2.70±0.42) m]和郁闭度较低[(1.85±0.57)对(2.10±0.47)]的区域(P < 0.05),新笋密度大小是该栖息地在整个野化培训期间是否被利用的最重要因素。该野化培训大熊猫幼仔保持着与带仔母兽相近的生境选择特征,对竹子环境的选择也与卧龙野生大熊猫相似,野化培训对该大熊猫幼仔产生了积极的作用。野化培训大熊猫幼仔形成的家域和核域面积分别为9.21 hm2 和1.93 hm2,占野化培训圈面积的51.95%和10.89%,其中家域面积仅有卧龙野生大熊猫的1.4%-2.4%,所以在以后的野化培训过程中需要采取增加野化培训圈中环境丰富度等方式,促进野化培训大熊猫形成较大的家域面积。  相似文献   

11.
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   

12.
研究大熊猫种群空间利用的消长动态及其干扰因素对识别大熊猫潜在生境、保护大熊猫种群可持续增长具有重要的现实意义。本文收集了第三次和第四次秦岭大熊猫种群及栖息地调查数据,借助地理信息系统空间分析工具,对比分析了大熊猫种群的空间利用变化格局,并探究了道路干扰对大熊猫种群空间利用格局的影响。结果显示:(1)2000-2012年间,佛坪、长青核心密集区大熊猫种群空间利用密度西北方向增加,东南方向减少,即黄柏塬保护区呈增加趋势,而佛坪、观音山和周至保护区交界处呈减少趋势。其中,局部高密度区面积减少,但整体空间利用面积增大,并呈向外围扩散趋势。种群空间利用密度最大增长达3.05痕迹点/ km2,最大减小密度达2.71痕迹点/km2。(2)距国道、省道和县道2000 m以内种群空间利用密度增幅上升,距乡村道路2000 m外种群空间利用密度变化减小,且距高速公路3500 m大熊猫种群空间利用密度由减转增。深入探讨大熊猫种群空间利用格局可为建设优良栖息地和潜在栖息地提供参考,其结论将有助于优化道路选址和保护区规划,缓解人为活动和野生动物之间的冲突。  相似文献   

13.
大熊猫是中国特有的珍稀濒危物种,而西氏贝蛔虫是大熊猫体内最为常见的肠道寄生虫,对野生和圈养大熊猫危害极大。考虑到大熊猫因分布区域的差异而形成了不同的亚种以及寄生虫与宿主间广泛的协同进化关系,西氏贝蛔虫是否也存在与大熊猫相适应的亚种分化一直是野生动物学家极其关注和热议的话题。为此,本文选择中国两大山系(岷山和邛崃)大熊猫种群体内共计34株西氏贝蛔虫虫体样本进行种群遗传多态性研究。利用PCR技术扩增出了岷山(14株)和邛崃(20株)西氏贝蛔虫的线粒体12S基因全序列并对其做了遗传多样性分析。结果表明:(1)34个样本包含9个单倍型,呈现出一个高单倍性多样性和低核苷酸多样性的特点;(2)负的Tajima's D和Fu's Fs中性检验值及“多峰型”的种群歧点分布图暗示种群不久前曾经历过突增长的现象;(3)低的种群间的分化系数和高的基因流表明两个地理种群间未形成显著的遗传分化;(4)系统发育树和单倍型网络图表明两山系种群分布无区域特异性。因此,岷山和邛崃山系的大熊猫体内的西氏贝蛔虫种群遗传变异性较低,分化不明显。该发现不仅暗示了西氏贝蛔虫与其宿主(大熊猫)的进化不同步,而且还为不同区域大熊猫西氏贝蛔虫病的监控提供了理论依据。  相似文献   

14.
大熊猫精液超低温冷冻的比较   总被引:2,自引:1,他引:1  
对卧龙自然保护区大熊猫研究中心的9只雄性大熊猫电刺激采精,比较研究了稀释液中甘油含量、精液离心、不同稀释液和冷冻方法对大熊猫精液超低温冷冻保存后的活力、运动状态和顶体的影响。稀释液中甘油的含量为4%-5%较好,冻精解冻后的活力和顶体的正常率能保持鲜精的一半。离心和未离心的精液经超低温冷冻,解冻后的活力和运动状态都较接近。TEST和SFS两种稀释液的效果没有明显的差异。细管的冷冻过程较颗粒方便、快捷,时间容易控制,是一种较好的超低温冷冻精液的方法。  相似文献   

15.
The giant panda is an example of a species that has faced extensive historical habitat fragmentation, and anthropogenic disturbance and is assumed to be isolated in numerous subpopulations with limited gene flow between them. To investigate the population size, health, and connectivity of pandas in a key habitat area, we noninvasively collected a total of 539 fresh wild giant panda fecal samples for DNA extraction within Wolong Nature Reserve, Sichuan, China. Seven validated tetra‐microsatellite markers were used to analyze each sample, and a total of 142 unique genotypes were identified. Nonspatial and spatial capture–recapture models estimated the population size of the reserve at 164 and 137 individuals (95% confidence intervals 153–175 and 115–163), respectively. Relatively high levels of genetic variation and low levels of inbreeding were estimated, indicating adequate genetic diversity. Surprisingly, no significant genetic boundaries were found within the population despite the national road G350 that bisects the reserve, which is also bordered with patches of development and agricultural land. We attribute this to high rates of migration, with four giant panda road‐crossing events confirmed within a year based on repeated captures of individuals. This likely means that giant panda populations within mountain ranges are better connected than previously thought. Increased development and tourism traffic in the area and throughout the current panda distribution pose a threat of increasing population isolation, however. Maintaining and restoring adequate habitat corridors for dispersal is thus a vital step for preserving the levels of gene flow seen in our analysis and the continued conservation of the giant panda meta‐population in both Wolong and throughout their current range.  相似文献   

16.
大熊猫作为国家保护动物,其健康问题备受瞩目。为了维护大熊猫的肠道健康,本研究从大熊猫肠道内分离出适宜于大熊猫肠道环境的乳酸菌菌株,有望将其制成熊猫肠道微生物制剂,从而改善大熊猫肠道菌群环境。从雅安市宝兴县蜂桶寨自然保护区选取圈养与野生大熊猫的粪便,通过体外培养分离出9个菌株。分离菌株经过革兰氏染色镜检、过氧化氢产气、菌落形态观察等方法与技术初步鉴定为乳酸菌。对这9株乳酸菌进行耐酸试验、耐胆盐试验、抑菌能力试验和产酸能力等测试,筛选出了3个适应性较强,有望制成调节大熊猫肠道内环境平衡作用的微生态菌剂的菌株。16S rRNA基因序列分析表明:分离菌株J1、J2和J4分别为融合魏斯氏菌(Weissella confusa),海氏肠球菌(Enterococcus heynei)和非解乳糖链球菌(Streptococcus alactolyticus),有望被应用于大熊猫肠道微生态制剂的研究。  相似文献   

17.
大熊猫(Ailuropoda melanoleuca)是中国特有的珍稀动物,在其整个消化道内膜上,都分布有丰富的粘液腺。在野外,这些粘液腺的分泌物包裹于大熊猫摄食的竹茎、竹叶和竹笋表面而排出体外;圈养条件下,常常见到这些分泌物积聚到一定数量而成团排出,这即被称为大熊猫的排粘液现象(王平  相似文献   

18.
Maintaining a good cub-rearing relationship is of great significance for the healthy development of newborn giant panda cubs. Oxytocin plays a key role in this cub-rearing relationship development during the breeding period. To investigate the relationship between oxytocin levels and maternal behavior, we sampled the maternal behavior of 6 adult female giant pandas (3 in lactation group, 3 in non-lactation group) at Chengdu Research Base of Giant Panda Breeding from June to September 2019 by using the focal sampling method, and tested the urine oxytocin level of each individuals by using enzyme-linked immunosorbent assay. The results showed that the oxytocin levels were significantly higher in the lactation group (278. 86 pg/mg ±44. 42 pg/mg) than in the non-lactation group. For the two types of breastfeeding groups, the level of oxytocin in the multiparous female pandas (185. 64 pg/mg ±44. 61 pg/mg) was significantly lower than that in the primiparous female pandas (465. 30 pg/mg ±82. 39 pg/mg). Compared with the primiparous female pandas, the multiparous female pandas had more embracing cub behavior (77. 45% ±1. 24%) and feeding behavior (15. 22% ±1. 62%), but less licking cub (14. 26% ±0. 91%) and position adjustment behavior (1. 69% ±0. 29%). Finally, we found the licking cub behavior was significantly positively correlated with the oxytocin level in the lactation group, and the embracing cub behavior was significantly negatively correlated with the oxytocin level in the lactation group. The results indicate that primiparous female pandas show more maternal behavior, less individual behavior and higher oxytocin levels. The results of this study suggest that the different reactions of oxytocin in the two types of giant panda females may help to improve the refined and differentiated breeding techniques for captive giant pandas in the future.  相似文献   

19.
佛坪自然保护区野生大熊猫交配行为的观察   总被引:9,自引:2,他引:7  
On March 26 and 27, 2003, we observed six and five giant pandas assembled together respectively in Huodiba and Lijiagou districts of Sanguanmiao, Foping Nature Reserve, Shaanxi Province, China. The mating sites were located in the coniferous forest and mixed coniferous and deciduous forest, with steep slope and sparse shrubs and bamboos. Wind power was estimated over 3rd category in those two days. The competition and lighting among male pandas were observed, and the mating right with the female panda was mainly based on the hierarchical ordering. However, not all the winners during competition can be access to mating with the female panda. For wild giant panda, its mating system is maybe plastic, which perhaps is affected by environment, time and panda population itself. Cubs or sub-adults are observed oceurring at the mating site, which is considered to be linked with the learning of the reproductive behavior. Our results maybe provide a useful guideline to the management and breeding of giant pandas in the captivity.  相似文献   

20.
Genetic variations in the giant panda populations in Wanglang and Baoxing Nature Reserves were evaluated in this study. Panda feces were collected from these two reserves and DNA samples extracted from the feces were genotyped at 13 microsatellite loci. A total of 130 alleles were identified from the 13 microsatellite loci in 63 giant pandas, including 35 private alleles in Wanglang, 53 private alleles in Baoxing, and 42 alleles shared between the two populations. The mean observed heterozygosity, average number of alleles, average number of allelic richness, and average polymorphism information content were 0.488, 6.2, 3.302, and 0.612, respectively for the Wanglang population and 0.553, 7.6, 4.050, and 0.747 for the Baoxing population. A moderate degree of genetic differentiation (F st = 0.26) and no gene flow were found between these two populations. W. He and L. Lin contributed equally to this work.  相似文献   

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