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1.
繁殖期高原鼠兔的行为时间分配与后代存活率的关系   总被引:1,自引:0,他引:1  
2002年4-8月份,在中国科学院海北高寒草甸生态系统定位站附近,采用标志流放、直接观察法和解剖法对青藏高原特有的植食性小哺乳动物———高原鼠兔(Ochotonacurzoniae)的行为时间分配、繁殖特征和后代存活率等方面进行了研究。结果表明,雌、雄成体平均地面活动时间占总时间的比例分别为88.67%和89.88%,在不同的繁殖时段,成体的各种行为时间分配存在显著的变化,并影响后代的存活率。幼体从出生到15d的存活率和雌、雄性成体的每次移动距离以及雌性成体的地面活动强度都显著的正相关;从15d到45d的存活率和雄性成体的地面活动强度、观望强度显著的正相关。在相同的观察时期,高原鼠兔雌、雄成体的一些行为时间分配存在显著差异,如雄性成体地面移动距离、频次在繁殖前期显著的高于雌性成体;雄性成体的观望强度在6、7月份显著高于雌性成体。说明雄性成体在领域防卫中较雌性成体承担更多的责任,雌、雄成体在育幼活动中的繁殖投入存在互补性。  相似文献   
2.
The salinity responses of marine and freshwater Bangia have been studied in laboratory culture. Although both isolates possessed salinity tolerances which were dependent upon the salinity regimes of their original habitats, neither was restricted in its salinity tolerances to that salinity range alone. The marine isolate was able to proliferate after a single step transfer into a freshwater-based medium. Certain cells within the thallus appeared to be resistant to the sudden decrease in salinity and these developed into dwarf plantlets, following a period of dormancy. An hypothesis is proposed that Bangia occurring in freshwater is a well-adapted ecotype of the marine form, thus supporting the conspecific theory.  相似文献   
3.
个性特征是指动物个体间稳定、可遗传的行为差异,与相关基因多态性有关,反映了动物对环境的适应模式,探究个性相关基因变异,将有助于更好地理解动物对环境的适应与进化机制。本文以高原鼠兔 (Ochotona curzoniae) 为对象,研究了5个不同海拔地区高原鼠兔的个性 (探究性、勇敢性和温顺性) 差异特征,并检测了个性相关基因5-羟色胺转运体 (SERT) 的单核苷酸多态性 (SNP) 和mRNA表达。结果发现,高海拔地区高原鼠兔的探究性和勇敢性显著高于低海拔地区,而高海拔地区高原鼠兔SERT基因mRNA表达量显著低于低海拔地区,提示不同海拔高原鼠兔个性特征差异可能与SERT基因mRNA表达有所关联。进一步检测不同海拔地区高原鼠兔SERT基因多态性及其分布差异情况,发现该基因存在6个SNP (其中5个位于外显子3,1个位于外显子5 );不同海拔地区鼠兔基因分布差异分析显示外显子5的c.A1063C 同义突变与海拔之间存在显著相关,高海拔地区该位点CC基因型分布频率显著高于低海拔地区;c.A1063C的基因型虽然与探究性、勇敢性无显著相关,但与温顺性显著相关。综上所述,随着海拔升高,高原鼠兔探究性和勇敢性增加,这有利于动物获取更多的食物资源,进而增加其生存机会。与此同时,SERT基因多态性显示与不同海拔地区的生存环境相适应的特征,且与温顺性有关,暗示不同海拔高原鼠兔个性差异可能与SERT基因SNP的差异有关。本研究从基因表达与突变的角度尝试阐述高原鼠兔适应不同海拔环境的行为差异,显示了不同海拔地区高原鼠兔行为生存策略潜在的分子机制。  相似文献   
4.
In 2010, the American pika (Ochotona princeps fenisex) was denied federal protection based on limited evidence of persistence in low‐elevation environments. Studies in nonalpine areas have been limited to relatively few environments, and it is unclear whether patterns observed elsewhere (e.g., Bodie, CA) represent other nonalpine habitats. This study was designed to establish pika presence in a new location, determine distribution within the surveyed area, and evaluate influences of elevation, vegetation, lava complexity, and distance to habitat edge on pika site occupancy. In 2011 and 2012, we conducted surveys for American pika on four distinct subalpine lava flows of Newberry National Volcanic Monument, Oregon, USA. Field surveys were conducted at predetermined locations within lava flows via silent observation and active searching for pika sign. Site habitat characteristics were included as predictors of occupancy in multinomial regression models. Above and belowground temperatures were recorded at a subsample of pika detection sites. Pika were detected in 26% (2011) and 19% (2012) of survey plots. Seventy‐four pika were detected outside survey plot boundaries. Lava complexity was the strongest predictor of pika occurrence, where pika were up to seven times more likely to occur in the most complicated lava formations. Pika were two times more likely to occur with increasing elevation, although they were found at all elevations in the study area. This study expands the known distribution of the species and provides additional evidence for persistence in nonalpine habitats. Results partially support the predictive occupancy model developed for pika at Craters of the Moon National Monument, another lava environment. Characteristics of the lava environment clearly influence pika site occupancy, but habitat variables reported as important in other studies were inconclusive here. Further work is needed to gain a better understanding of the species’ current distribution and ability to persist under future climate conditions.  相似文献   
5.
Both the length of the growing season and the intensity of herbivory often vary along climatic gradients, which may result in divergent selection on plant phenology, and on resistance and tolerance to herbivory. In Sweden, the length of the growing season and the number of insect herbivore species feeding on the perennial herb Lythrum salicaria decrease from south to north. Previous common‐garden experiments have shown that northern L. salicaria populations develop aboveground shoots earlier in the summer and finish growth before southern populations do. We tested the hypotheses that resistance and tolerance to damage vary with latitude in L. salicaria and are positively related to the intensity of herbivory in natural populations. We quantified resistance and tolerance of populations sampled along a latitudinal gradient by scoring damage from natural herbivores and fitness in a common‐garden experiment in the field and by documenting oviposition and feeding preference by specialist leaf beetles in a glasshouse experiment. Plant resistance decreased with latitude of origin, whereas plant tolerance increased. Oviposition and feeding preference in the glasshouse and leaf damage in the common‐garden experiment were negatively related to damage in the source populations. The latitudinal variation in resistance was thus consistent with reduced selection from herbivores towards the northern range margin of L. salicaria. Variation in tolerance may be related to differences in the timing of damage in relation to the seasonal pattern of plant growth, as northern genotypes have developed further than southern have when herbivores emerge in early summer.  相似文献   
6.
Although marine macroalgae have recently entered the lists of endangered species, conservation efforts are still limited by a lack of data, particularly for naturally rare species. One example is the turf‐forming Ahnfeltiopsis pusilla (Mont.) P. C. Silva et DeCew. Albeit cataloged as vulnerable in the Northwest Iberian Peninsula (NWIP), where it occurs only at five enclaves separated by 1,200 km from the closest recorded presence of the species, nothing is known about its genetic diversity and population connectivity. We used amplified fragment length polymorphism (AFLP) and sequences of the intergenic region between the mitochondrial cytochrome oxidase subunit 2 and subunit 3 genes (cox2‐3) to investigate its genetic structure at large (1,200 km), regional (<125 km), fine (<250 m), and patch (<1 m) scales. While cox2‐3 variability was too low for the intraspecific study, AFLP revealed that most of the genetic diversity was due to differences between populations. Locally, genetic diversity was always low, and clones were frequent, suggesting that asexual reproduction may be common; patches of turf, however, often were composites of various genetic individuals. Genetic structure at local, regional, and large scales indicated that A. pusilla is a poor disperser, and an assignment test found no evidence of real‐time dispersal between NWIP sites. Therefore, it is proposed that the five NWIP enclaves are designated independent management units (MUs). Bayesian‐clustering approaches suggested that the three southernmost sites are particularly valuable for conservation since they concentrate most of the genetic heritage of A. pusilla in NWIP. Our study shows that the approaches of conservation genetics may provide useful insights for endangered seaweeds.  相似文献   
7.
随着统计模型及空间信息数据的不断发展和完善,物种分布模型已经成为全球变化背景下研究大尺度物种分布情况的重要工具。高原鼠兔(Ochotona curzoniae)是青藏高原特有的关键物种,在青藏高原生态系统中占有重要地位。通过采集高原鼠兔的分布点数据及环境变量数据,基于R语言中BIOMOD包中的7个模型对其在青海湖流域的分布进行了模拟。结果表明,高原鼠兔主要分布于青海湖西岸和北岸、天峻县周边及布哈河流域上游,影响高原鼠兔分布的主要环境因子为距道路距离、距居民点距离、最暖月最高气温、NDVI标准差、最冷季和最干季降水量。BIOMOD组合模型中,推进式回归树模型(GBM)和最大熵模型(MAXENT)的模拟效果最好,广义线性回归模型(GLM)结果较差。而优化后的结果显示,模拟结果的集成和筛选能有效提高模型的精度和效果。  相似文献   
8.
本研究扩增了169号鼠兔属样本的cyt b序列,代表13个种11亚种及5个未分类单元,下载了66条分类地位确定而完整的Cyt b序列,包括25种及9个亚种。构建了Bayesian系统发育树,计算了遗传距离,开展了物种界定分析;对13个种4亚种及5个未分类单元174号完整头骨和外形的20个形态学量度数据开展了主成分分析、判别分析和T检验;对头骨和身体外部特征进行了比较研究。结果显示:鼠兔属包含5个亚属,分别是Ochotona, Conothoa, Pika, Lagotona 和一新亚属;5个亚属间的遗传距离在12.8%-16.0%之间;高黎贡鼠兔(Ochotona gaoligongensis)是灰颈鼠兔(O. forresti)的亚种;喜马拉雅鼠兔(O. himalayana)是灰鼠兔(O. roylei)的亚种;木里鼠兔(O. muliensis)是川西鼠兔(O. gloveri)的亚种;宁夏鼠兔(O. argentata)应为蒙古鼠兔(O. pallasi)的亚种;西伯利亚鼠兔(O. turuchanensis) 为高山鼠兔(O. alpina)的同物异名。藏鼠兔循化亚种(O. thibetana xunhuaensis)应提升为种:循化鼠兔(O. xunhuaensis);东北鼠兔长白山亚种(O. hyperborea coreana)应该提升为种:长白山鼠兔(O. coreana);藏鼠兔峨眉亚种(O. thibetana sacraria)应提升为种:峨眉鼠兔(O. sacraria); 藏鼠兔锡金亚种(O. thibetana sikimaria)应提升为种:锡金鼠兔(O. sikimaria)。通过分子系统学和形态学研究,发现了鼠兔属1 新亚属和5个新种。新亚属命名为异耳鼠兔亚属(Alienauroa subgen. n.),属模为黄龙鼠兔(O. huanglongensis sp. n.),成员包括黄龙鼠兔新种、峨眉鼠兔、循化鼠兔,以及在龙门山和大巴山发现的2个新种,共计5个种。新亚属的鉴定特征是:耳上前缘内侧有一个密被短毛的异耳屏(Congenial tragus);头骨扁平,颅面平直;眼小,眼眶长和眼眶宽均小于其他亚属;被毛粗长而无光泽;腹毛多为灰白色。5个新种分别发现于四川黄龙自然保护区、四川北部龙门山、四川北部大巴山、四川西部邛崃山、西藏雅鲁藏布江中游的朗县。我们分别将其命名为黄龙鼠兔(Ochotona huanglongensis sp. n.),扁颅鼠兔(Ochotona flatcalvariam sp.n.),大巴山鼠兔(Ochotona dabashanensis sp. n.),雅鲁藏布鼠兔(Ochotona yarlungensis sp. n.)和邛崃鼠兔(Ochotona qionglaiensis sp. n.)。黄龙鼠兔的鉴定特征是:门齿孔前段平行;脑颅扁平,颅高为颅全长的33.5%;耳大,平均20mm以上(不含耳基部的管),异耳屏三角形,但顶端圆形;毛长而粗糙,无光泽,背部毛长约20mm;腹面毛色以灰白为主;前后足背面灰白色,腹面黑灰色,指(趾)垫大,橘黄色,露出毛外,爪黄白色半透明。扁颅鼠兔的鉴定特征是:脑颅异常扁平,颅高约11mm,颅高仅为颅全长的31%;眼眶很小,平均6.7mm×5.6mm;个体小,体长140mm以下;体毛长而粗糙无光泽,背部毛长22mm;耳小,平均17mm左右,异耳屏阔圆型,相对较小;背毛沙黄色,腹毛黄白。大巴山鼠兔的鉴定特征是:异耳屏镰刀状;耳相对较小,均在17mm以下,和峨眉鼠兔、扁颅鼠兔差不多,比该亚属循化鼠兔和黄龙鼠兔小。颅高相对较大,颅面更隆突,颅高平均12.45mm, 眼眶相对较大,平均8.52mm×7.13mm。雅鲁藏布鼠兔的鉴定特征是:与黑唇鼠兔(O. curzoniae)和努布拉克鼠兔拉萨亚种(O. nubrica lhasaensis)有很近的亲缘关系;唇缘有很窄的深灰色圈,深灰色圈外侧为灰白色;前后足底部毛浓密,趾端毛多而长,趾垫和爪隐于毛中;个体中等,体长150mm左右,比黑唇鼠兔和努布拉克鼠兔拉萨亚种小得多;颅面较隆突,但与黑唇鼠兔相比,颅面相对平直;被毛黑褐色。邛崃鼠兔的鉴定特征是:大小及头骨和藏鼠兔很相似,但该种和藏鼠兔的显著不同是眶间宽狭窄,平均4.05mm(3.64-4.19mm),而藏鼠兔眶间宽一般超过4.2mm,平均为4.45mm;该种毛色为沙色带黄色调,毛粗长;藏鼠兔为黑褐色调,毛相对较短;邛崃鼠兔前后足背面为显著的草黄色,而藏鼠兔前后足背面黄白色。  相似文献   
9.
高原鼠兔洞穴区次生斑块面积的测定方法   总被引:2,自引:0,他引:2  
于龙  周立  刘伟  周华坤  张毓 《兽类学报》2006,26(1):89-93
利用数码相机快速获得高原鼠兔挖掘活动形成的次生斑块图像,运用地理信息系统软件(Arcview) 计算其面积。运用该方法对草地内高原鼠兔洞穴区次生斑块的面积进行了实地测量,结果显示该方法可以快速、准确测量出不同形状次生斑块的面积,具有良好的实用性和可操作性。  相似文献   
10.
索有瑞  李天才 《兽类学报》2003,23(1):89-91,38
铅、镉、砷、汞、锑和铋等元素是人与动物生命活动非必需且有害的微量元素[1] 。哺乳类动物体内的这些微量元素主要由食物链传递所产生[2 ,3] 。本文对高原鼢鼠 (Myospalaxbaileyi)和高原鼠兔(Ochotonacurzoniae)骨骼中非必需微量元素砷、锑、汞、铋、铅、镉的分布、种间含量差异及其相关性进行了分析和讨论 ,为高寒草甸生态系统研究小哺乳动物的营养生态学、化学生态学以及生态系统的物质循环[4 ,5] 等提供基础资料。1 材料与方法1 1 样品预处理1994年 5~ 6月在中国科学院海北高寒草甸生态系统定位站…  相似文献   
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