5 resultados para Martes pennanti

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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We compared partial sequences (402 bp) of the mitochondrial cytochrome b gene in 68 individuals of martens (Martes), weasels (Mustela) and their relatives from the Northern Hemisphere to identify the modes of geographic differentiation in each species. We then compared complete sequences (1140 bp) of the gene in 17 species of the family Mustelidae to know the spatial and temporal modes of speciation, constructing linearized trees with transversional substitutions for deeper lineage divergences and with transversions and transitions for younger lineages. Our data suggested that these lineages of Martes and Mustela differentiated in a stepwise fashion with five radiation stages from the generic divergences (stage I) to the intraspecific divergences (stage V), during the last 10 or 20 million years as the fossil evidence suggests. In the lineage of Martes, the first offshoots are of Martes flavigula, M. pennanti, and Gulo gulo (stage II), the second is M. foina (stage III), and the third are M. americana, M. martes, M. melampus, and M. zibellina (stage IV). The divergence of the lineages of Mustela is likely to have taken place concurrently with the radiations of the Martes. These divergence processes are attributable in part to the geographic allocation along the two continents, North America and Eurasia, as well as among peripheral insular domains, such as Taiwan and the Japanese Islands. In addition, the Eurasian continent itself was shown to have been involved in the species diversification in the martens and weasels.

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用G带,C带和银染技术对青鼬的核型观察分析结果:2n=40,双臂染色体16对,单臂染色体3对。X染色体为中着丝粒染色体。No.14同源染色体着丝点C带,一条呈阳性,另一条呈阴性。其余全部着丝点C带均显示强阳性。No.8染色体长臂显示C带阳性,No.11和No.13染色体的短臂具端位异染色质。仅有1对Ag-NORs,分布于No.15染色体的次缢痕部位,其短臂显示C带阳性,No.19染色体整个呈C带阳性。并同貂属其他种作了比较,初步探讨了青鼬的分类地位和亲缘关系。图版1表1参17

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We have made a set of chromosome-specific painting probes for the American mink by degenerate oligonucleotide primed-PCR (DOP-PCR) amplification of flow-sorted chromosomes. The painting probes were used to delimit homologous chromosomal segments among human, red fox, dog, cat and eight species of the family Mustelidae, including the European mink, steppe and forest polecats, least weasel, mountain weasel, Japanese sable, striped polecat, and badger. Based on the results of chromosome painting and G-banding, comparative maps between these species have been established. The integrated map demonstrates a high level of karyotype conservation among mustelid species. Comparative analysis of the conserved chromosomal segments among mustelids and outgroup species revealed 18 putative ancestral autosomal segments that probably represent the ancestral chromosomes, or chromosome arms, in the karyotype of the most recent ancestor of the family Mustelidae. The proposed 2n = 38 ancestral Mustelidae karyotype appears to have been retained in some modern mustelids, e.g., Martes, Lutra, ktonyx, and Vormela. The derivation of the mustelid karyotypes from the putative ancestral state resulted from centric fusions, fissions, the addition of heterochromatic arms, and occasional pericentric inversions. Our results confirm many of the evolutionary conclusions suggested by other data and strengthen the topology of the carnivore phylogenetic tree through the inclusion of genome-wide chromosome rearrangements. Copyright (C) 2002 S. KargerAG, Basel.

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由自然和人为原因引起的生境丧失与生境破碎化已严重影响到野生动物的生存。大兴安岭北坡是国家一级保护动物紫貂(Martes zibellina)的主要分布区,1987年发生在这里的特大森林火灾造成了森林景观的严重破碎化,紫貂的生存面临极大的威胁。本文的研究目的是为了确定火灾13年后,紫貂冬季生境的恢复程度。首先根据紫貂对冬季生境的喜好,选取对其生存影响较大的生态因子,结合数字化林相图,利用地理信息系统软件ArcGIS编制火烧前后的生境适宜性类型图。然后选取相关的景观格局指标,对火烧前后的生境格局进行对比分析。结果显示,尽管火后采取了一系列的森林恢复措施,但紫貂冬季适宜生境仍有大幅度减少,特别是中等适宜生境类型减少最为明显。适宜生境破碎化加剧,隔离度增加。适宜生境斑块的形状趋于简单,软边界比重有所增加。以上结果表明,与火前相比,紫貂生境明显恶化,需要较长的时间恢复。

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本文根据紫貂(Martes zibellina)行为生态学特征,利用景观生态学的原理和技术,将大兴安岭呼中区紫貂生境划分成最适、一般适宜和非适宜三种类型。以其紧邻的呼中自然保护区核心区1989年的生境格局代表呼中区1970年开发前的原始生境,揭示原始生境、1989年、2000年3个时期紫貂生境格局及变化。结果表明,1970-2000年紫貂生境格局持续恶化,已极不利于紫貂的生存。适宜生境向非适宜生境呈单一方向转变,且适宜生境由沟谷两侧向远离河谷的森林腹地大幅度萎缩。生境格局变化与经营时间长短关系密切,原始状态是以适宜生境为基质的均质状态,开发至一定时期,生境格局的异质化程度增大,继续开发则异质化程度又减小,形成以非适宜生境为基质的相对均质状态。大于巢区最小面积(4km2)的生境斑块的面积百分比、斑块密度明显下降,斑块间距离显著增大。进而对导致生境格局变化的要素进行分析后发现,持续采伐是紫貂生境格局变化的主要驱动因子,采伐改变了植被条件,而植被条件的非适宜性造成了紫貂非适宜生境。1989-2000年的采伐格局也并不合理,各年伐区在研究区内均匀分布,采伐设计时没有考虑动物生境保护。但可以推断,1999年后开始逐步实施的“天然林保护工程”有利于紫貂生境的恢复,本研究强调森林采伐经营的空间格局与动物生境保护之间的关系,旨在促进决策部门将生物保护作为采伐经营政策制定的重要决策因子。