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101.
- White‐nose syndrome (WNS) has caused the death of millions of bats, but the impacts have been more difficult to identify in western North America. Understanding how WNS, or other threats, impacts western bats may require monitoring other roosts, such as maternity roosts and night roosts, where bats aggregate in large numbers.
- Little brown bats (Myotis lucifugus) are experiencing some of the greatest declines from WNS. Estimating survival and understanding population dynamics can provide valuable data for assessing population declines and informing conservation efforts.
- We conducted a 5‐year mark–recapture study of two M. lucifugus roosts in Colorado. We used the robust design model to estimate apparent survival, fidelity, and abundance to understand population dynamics, and environmental covariates to understand how summer and winter weather conditions impact adult female survival. We compared the fidelity and capture probability of M. lucifugus between colonies to understand how bats use such roosts.
- Overwinter survival increased with the number of days with temperatures below freezing (β > 0.100, SE = 0.003) and decreased with the number of days with snow cover (β < −0.40, SE < 0.13). Adult female fidelity was higher at one maternity roost than the other. Overwinter and oversummer adult female survival was high (>0.90), and based on survival estimates and fungal‐swabbing results, we believe these populations have yet to experience WNS.
- Recapture of M. lucifugus using antennas that continuously read passive integrated transponder tags allows rigorous estimation of bat population parameters that can elucidate trends in abundance and changes in survival. Monitoring populations at summer roosts can provide unique population ecology data that monitoring hibernacula alone may not. Because few adult males are captured at maternity colonies, and juvenile males have low fidelity, additional effort should focus on understanding male M. lucifugus population dynamics.
102.
翼手目动物(蝙蝠)的食性多样性丰富,其食物包括昆虫、鱼类、两栖动物、爬行动物、鸟类、哺乳动物、植物果实、花、花粉、花蜜、叶片和血液等。其中,大约70%的蝙蝠主要以昆虫为食,而以血液为食的吸血蝙蝠只有3种,它们是哺乳动物中唯一的仅以血液为食的动物类群。因此,吸血蝙蝠是研究动物食性演化的重要模式动物。本文综述了吸血蝙蝠在形态学、生理学、行为学、感觉系统和肠道微生物等方面的研究,指出了吸血蝙蝠食性特化的适应性特征。随着普通吸血蝠高质量基因组的公布,我们将有机会探究食性相关基因在吸血蝙蝠中的功能改变,阐明动物食性转变的分子机理。本文将为吸血蝙蝠和其它动物食性转变的研究提供有益的参考。 相似文献
103.
Plecotus auritus, a small, gleaning bat species, lives in small, isolated summer colonies in which both males and females show a high degree
of natal philopatry. Despite this, colonies have high gene diversities and low inbreeding coefficients. It has been suggested
that inbreeding is avoided because mating occurs during autumnal and spring swarming at hibernation sites. We tested this
hypothesis by comparing microsatellite profiles, based on eight loci, of bats from six summer colonies and two swarming sites
they were known to visit from radiotelemetry studies. We found high gene diversities (H
s = 0.77) at both swarming sites and summer colonies which were not statistically different. There was no detectable isolation
by distance and FST was low (0.001). Together, these results suggest high gene flow between sites. Despite this, there was small but significant
genetic differentiation amongst summer colonies and between summer colonies and the primary swarming site. We suggest that
swarming is important for gene flow and for maintaining genetic diversity in this highly philopatric species and discuss possible
reasons for the genetic differentiation observed. The identification and protection of swarming sites should be a major conservation
priority for this and other temperate bat species. 相似文献
104.
Stella Teles de Souza Ana Laura Nunes Morais Lívia Medeiros Cordeiro Ana Maria Leal-Zanchet 《ZooKeys》2015,(470):1-16
Brazilian cave diversity, especially of invertebrates, is poorly known. The Bodoquena Plateau, which is located in the Cerrado Biome in central Brazil, has approximately 200 recorded caves with a rich system of subterranean water resources and high troglobitic diversity. Herein we describe a new troglobitic species of Girardia that represents the first obligate cave-dwelling species of the suborder Continenticola in South America. Specimens of the new species, which occur in a limestone cave in the Bodoquena Plateau, in the Cerrado biome, are unpigmented and eyeless. Species recognition in the genus Girardia is difficult, due to their great morphological resemblance. However, the new species can be easily recognized by a unique feature in its copulatory apparatus, namely a large, branched bulbar cavity with multiple diverticula. 相似文献
105.
Huabin Zhao Dong Xu Yingying Zhou Jon Flanders Shuyi Zhang 《Biochemical Systematics and Ecology》2009,37(3):154-161
Echolocating bats are able to orientate, navigate and forage without visual cues. To probe the role of vision in bats, we studied the visual opsin genes from the echolocating little brown bat (Myotis lucifugus). Short-wavelength sensitive (SWS1) opsin, middle/long-wavelength sensitive (M/LWS) opsin and rhodopsin cDNA sequences were identified from the Ensembl database and validated by the sequencing of genomic DNA. We retrieved the published orthologous genes from eleven additional representative species of mammals from GenBank and conducted an evolutionary analysis. We found that the M/LWS opsin and rhodopsin genes were both under strong purifying selection, whereas the SWS1 opsin gene has undergone positive selection at two amino acid sites and one lineage, though the main evolutionary force is still purifying selection. Two-ratio model of the SWS1 opsin gene revealed that the ω ratio for the little brown bat lineage was nearly three times lower than the background ratio, suggesting a much stronger functional constraint. Our relative rate tests show the little brown bat has a lower nonsynonymous substitution rate than those in other mammals (on average 32% lower) for the SWS1 opsin gene. However, no such significant differences were detected for the M/LWS opsin and rhodopsin genes. The results of the relative ratio tests are consistent with that of tests for selection, showing a history of purifying selection on the little brown bat opsin genes. These findings suggest a functional role of vision in the little brown bat despite being nocturnal and using echolocation. We speculate that this echolocating bat may be able to use visual cues to orientate, navigate and forage at night, to discriminate color under moonlight and starlight conditions, or to avoid predation by diurnal raptors. 相似文献
106.
记述采自海南的小黄蝠Scotophilus temmincki(Horsfield,1824)体表的寄生革螨1新种:吊罗肪刺螨Steatonyssus diaoluoensis sp.nov,.文中给出了中国肪刺螨亚属Steatonyssus 已知种检索表.研究标本保存于贵州大学昆虫研究所标本馆. 相似文献
107.
We isolated nine polymorphic microsatellite markers from the Chinese rufous horseshoe bat (Rhinolophus sinicus) using an enriched library method. We assessed genetic polymorphism at these loci in 42 individuals from a single population. We recorded high genetic diversity with four to 17 alleles per locus, and estimated expected and observed heterozygosity values ranging from 0.492 to 0.910 and from 0.462 to 0.881, respectively. No locus departed from Hardy-Weinberg equilibrium following Bonferroni correction, and no linkage disequilibrium was detected. Most loci successfully cross-amplified congeneric species. These loci will be used to characterize phylogeographical history of Rhinolophus sinicus in China. 相似文献
108.
四川绵阳洞栖蝙蝠多样性及受胁现状 总被引:3,自引:0,他引:3
1999~2005年,对四川省绵阳市洞栖性蝙蝠进行了凋杳。共采集到4科,5属,14种,约占四川蝙蝠种类31.8%,中国蝙蝠种类11.7%。其中,大足鼠耳蝠(Myotis ricketti)为中国特有种,中华鼠耳蝠(Myotis chinensis)已被列入《中国物种红色名录》中的易危(VU)种,南蝠(Iu io)等5种被列入近危(NT)种。调查中发现不少洞穴已被开发或正在被开发成旅游景点,人为干扰已严重威胁洞穴内蝙蝠的生存。建议对蝙蝠栖息地采取一定的保护措施,并加强保护蝙蝠的宣传教育。 相似文献
109.
Philip H. -S. Jen 《生物学前沿》2010,5(2):128-155
For survival, bats of the suborder Microchiropetra emit intense ultrasonic pulses and analyze the weak returning echoes to
extract the direction, distance, velocity, size, and shape of the prey. Although these bats and other mammals share the common
layout of the auditory pathway and sound coding mechanism, they have highly developed auditory systems to process biologically
relevant pulses at the expense of a reduced visual system. During this active biosonar behavior, they progressively shorten
the pulse duration, decrease the amplitude and pulse-echo gap as they search, approach and finally intercept the prey. Presumably,
these changes in multiple pulse parameters throughout the entire course of hunting enable them to extract maximal information
about localized prey from the returning echoes. To hunt successfully, the auditory system of these bats must be less sensitive
to intense emitted pulses but highly sensitive to weak returning echoes. They also need to recognize and differentiate the
echoes of their emitted pulses from echoes of pulses emitted by other conspecifics. Past studies have shown the following
mechanical and neural adaptive mechanisms underlying the successful bat biosonar behavior: (1) Forward orienting and highly
mobile pinnae for effective scanning, signal reception, sound pressure transformation and mobile auditory sensitivity; (2)
Avoiding and detecting moving targets more successfully than stationary ones; (3) Coordinated activity of highly developed
laryngeal and middle ear muscles during pulse emission and reception; (4) Mechanical and neural attenuation of intense emitted
pulses to prepare for better reception of weak returning echoes; (5) Increasing pulse repetition rate to improve multiple-parametric
selectivity to echoes; (6) Dynamic variation of duration selectivity and recovery cycle of auditory neurons with hunting phase
for better echo analysis; (7) Maximal multiple-parametric selectivity to expected echoes returning within a time window after
pulse emission; (8) Pulse-echo delaysensitive neurons in higher auditory centers for echo ranging; (9) Corticofugal modulation
to improve on-going multiple-parametric signal processing and reorganize signal representation, and (10) A large area of the
superior colliculus, pontine nuclei and cerebellum that is sensitive to sound for sensori-motor integration. All these adaptive
mechanisms facilitate the bat to effectively extract prey features for successful hunting. 相似文献
110.
绯鼠耳蝠Myotis formosus又称丽鼠耳蝠、红黑鼠耳蝠等,隶属于翼手目Chiroptera蝙,蝠科Vespertilionidae蝙蝠亚科Vespertilioninae鼠耳蝠属Myotis.2006年12月20日于河南省南阳市桐柏山熊洞(2°62′N,113°68′E,海拔301 m)发现一冬眠群共31只色彩鲜艳的蝙蝠,仅采集5只,外形测量后分离头骨,毛皮做成剥制标本保存于河南师范大学生命科学学院标本馆.经进一步鉴定,确定为绯鼠耳蝠华南亚种Myotis formous rufoniger,为河南省蝙蝠新纪录. 相似文献