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91.
MHC及其在种群遗传学和保护遗传学中的应用   总被引:13,自引:1,他引:12  
杨光  陈旭衍  任文华  严洁 《遗传》2002,24(6):712-714
主要组织相容性复合体(major histocompatibility complex,MHC)是脊椎动物体内与免疫应答调节密切相关的一个基因家族,是基因组中多态性最丰富的区域。通过MHC的遗传变异分析可以提供物种的遗传多样性水平、进化历史和种群动态,以及种群遗传结构等信息,并在濒危物种饲养繁殖种群的遗传管理中有重要应用。 MHC and Its Application in the Population and Conservation Genetics YANG Guang,CHEN Xu-yan,REN Wen-hua,YAN Jie Institute of Genetic Resources,Nanjing Normal University,Nanjing 210097,China Abstract:The major histocompatibility complex (MHC),with the highest genetic polymorphism,is a cluster of genes involved in immune response regulation in the vertebrates.MHC can provide information such as population genetic diversity,evolutionary history and population dynamics,and population genetic structure etc.It can also be applied in the captive breeding programme for endangered vertebrate species. Key words:major histocompatibility complex (MHC);genetic diversity,population viability;population genetic structure;captive breeding  相似文献   
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Discussions of the coastal environment and its health can be improved by more precise use of terms and clarification of the relationship, if any, between the health of ecosystems and the risks to human health. Ecosystem health is seldom defined and, in any case, has to be regarded in different terms than human health. Ecosystem health should embody both the structure and function of the ecosystem. One attractive concept is to define the health of ecosystems in terms of their vigor, organization and resilience. From that perspective, the health of an ecosystem is reduced if it becomes a less vigorous producer of valuable living resources, less diverse and organized, and more susceptible to and slower to recover from stress. Useful indicators of ecosystem health should reflect these properties, but also be supported by understanding of cause and effect relationships generated through research. Significant challenges remain in the integration of indicators in terms of both their interrelationships and holistic significance. There is also a need to develop indicators that are relevant to emerging threats to coastal ecosystems.  相似文献   
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Captive breeding has been suggested as a method of conserving many threatened vertebrates, and is increasingly being proposed as a valuable conservation strategy for invertebrates. Potential genetic problems associated with ex situ conservation are widely recognized, but a further issue has received less attention: the possibility that populations will undergo adaptation to the captive environment, rendering them less well adapted to survival in the wild. We investigated six traits related to dispersal and reproduction in a culture of the large white butterfly Pieris brassicae (L.), that had been captive for c. 100–150 generations, and in recently wild stock reared simultaneously in a common environment. Individuals in the captive culture were heavier, with smaller wings and lower wing aspect ratios. Females from the captive culture laid many more eggs in cage experiments, and had higher ovary mass at the time of peak egg production. These differences are consistent with adaptation to captive conditions. Over time, similar evolutionary changes may affect invertebrates reared in ex situ conservation programmes, decreasing the likelihood that these species can be re-established in the wild. Although the timescale over which most vertebrates are likely to adapt to captivity is longer, and the traits involved will be different, invertebrates like P. brassicae may also provide a model of potential problems in long-term ex situ conservation programmes for both invertebrates and vertebrates. We suggest that measures to reduce or slow adaptation to captivity should be introduced alongside measures to reduce deleterious genetic effects in captive populations.  相似文献   
95.
Local community participation and ex situ conservation has the potential to assist the recovery of the endangered Egyptian tortoise, Testudo kleinmanni. We initiated an in situ community‐based conservation and research program from a captive population of T. kleinmanni. We used a captive population of the Egyptian tortoise to train a member of the local community as a research technician and used his indigenous tracking skills and knowledge of the area to collect activity and dietary data on 28 captive tortoises. We overcame problems with illiteracy by creating a data sheet based on symbols and numbers. This data sheet allowed us to use the indigenous knowledge of various people from the community, and employ them in the future. Our local community approach to data collection, in conjunction with a craft program, made the conservation of the Egyptian tortoise more rewarding to the local community by providing a more sustainable form of income than collecting animals for the pet trade. Our multidimensional approach (local community participation as research technicians, craft program, and trust building) for gaining local support eventually led to the rediscovery of wild Egyptian tortoises in North Sinai, which was significant, as this species was presumed extinct in Egypt. We have now shifted our focus to in situ conservation, using the research and local capacity building template developed from this captive population study. Our template can be used by zoos and conservation organizations with small budgets and collections of native species in natural habitats to create similar captive research programs that can be applied to in situ conservation. Zoo Biol 26:397–406, 2007. © 2007 Wiley‐Liss, Inc.  相似文献   
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In the framework of the palaeogeographical reconstruction of the Western Taurus during Jurassic, the study of northern and eastern boundary of the Taurids started. Detailed facies analysis evidenced the position of the Barla Dag ramp between two elevated areas: the southern rimmed shelf extension of the platform system and the northern neritic-beach-land plain. In the basal biostratigraphical and ecological characteristics of the Balcikhisar volcano-sedimentary sequence, correlated with the Fele outcrop, one genus and three new species of foraminifers have been found: Sievoides kocyigiti n. gen., n. sp. and Mesoendothyra altineriana n. sp. from neritic environment, and Kurnubia feleensis n. sp. from rimmed shelf lagoon. Both carbonate sedimentary deposits are intercalated with spilitic-basalt pillow lava flows. The age of the new three species is Kimmeridgian, controlled by some foraminifer golden hooks.  相似文献   
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To monitor and evaluate potential risks to birds’ health, invertebrate species that have been used as live food items had their body contents searched for endoparasites. The contents of approximately 10,000 invertebrates were analyzed. A principal component analysis was performed to study the relationship between the presence/absence of endoparasites and the characteristics of the invertebrates. In most of them, including the species preferred by birds such as caterpillars, waxworms, mealworms, most grasshoppers, and spiders, no organism was identified. Such findings suggest a low potential for parasite transmission associated with its consumption by birds. Although they had unknown or even unlikely implications for the birds’ health, gregarines, oxyurides Leidynema sp., and digenetic trematodes Monolecithotrema sp. were found in samples from woodlice, cockroaches, and centipedes, respectively. The only avian parasites observed in this study were Heterakis gallinarum in samples from earthworms and Acuaria spiralis from woodlice. Suggestively, soil invertebrates showed a higher prevalence of endoparasites and may represent a higher potential risk in comparison to the other categories of invertebrates sampled herein. Detritivory and collected origin were also explanatory variables related to the presence of endoparasites in the current study.  相似文献   
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Learning has been postulated to ‘drive’ evolution, but its influence on adaptive evolution in heterogeneous environments has not been formally examined. We used a spatially explicit individual‐based model to study the effect of learning on the expansion and adaptation of a species to a novel habitat. Fitness was mediated by a behavioural trait (resource preference), which in turn was determined by both the genotype and learning. Our findings indicate that learning substantially increases the range of parameters under which the species expands and adapts to the novel habitat, particularly if the two habitats are separated by a sharp ecotone (rather than a gradient). However, for a broad range of parameters, learning reduces the degree of genetically‐based local adaptation following the expansion and facilitates maintenance of genetic variation within local populations. Thus, in heterogeneous environments learning may facilitate evolutionary range expansions and maintenance of the potential of local populations to respond to subsequent environmental changes.  相似文献   
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