1000 resultados para Leymus chinensis population


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石荠苎属(Mosla (Benth.) Buch.-Hamilt. ex Maxim.)是唇形科的一个小属,仅分布于东亚,该属复杂的变异式样一直困扰着系统学家.本论文是对该属进行三年物种生物学研究的结果.本研究从居群生物学出发,在广泛的野外调查后选取了47个居群进行取样和观察,在控制环境因素的实验设计条件下,测量了31个居群53个形态性状并分析了其变异规律;在扫描电镜下观察了含外类群在内的6属38个居群的花粉和小坚果表面微形态:对27个居群做了细胞学研究:对22个居群15个酶系统做了等位酶分析,获得了28个位点的资料;进行了35个组合的796次人工杂交.综合上述各方面资料的分析结果,对石荠苎属的形态变异与进化、居群分化、生殖隔离、物种形成、类群划分,以及起源和扩展作了详细的分析和讨论. 形态特征的数量遗传学分析表明,叶片大小和形状、苞片形态、花序(果序)和花萼(果期花萼)的复杂变异式样是造成分类混乱的主要原因.叶片大小和形状在小鱼仙草(M. dianthera)中呈现幅度很宽的连续变异,极端情况常分别被描述为不同的种,如M.remottllora和M.grosseserrata.少数突变体以及种间偶尔产生的杂交个体在苞片和花序形态上表现异常,都曾引起分类的混乱.本研究已经澄清M. bracteata和M. tamdaoensis是突变体,而M. exfoliata和M. longispica则是种间杂种.M.fomosana花萼上唇裂片长度的变异是导致分类困难的另一个原因,是小鱼仙草花萼上唇中裂片变异的极端类型。 通过比较分析揭示了石荠苎属中苞片形状、花序结构、花朵大小、花萼形态、小坚果和花粉粒表面纹饰以及染色体的变异和演化趋势,苞片由发达的叶状类型向披针形方向演化;花序由花朵疏离的松散状向紧缩的头状类型演化;花萼由近辐射对称,五个裂片近等长向二唇形演化;花冠由发达、鲜艳向退化方向演化:小坚果由具旋涡状深雕纹向具网纹类型演化;花粉粒由无明显突起向有明显条文或块状突起的类型演化;核型由不对称性小向不对称性增强发展;繁育系统由以异交为主向以自交为主演化,并且带动一系列花部形态的相关变异. 等位酶分析结果表明,石荠苎属种内的进化以遗传变异的积累和繁育系统的转变造成的居群间分化为主要特征.杭州石荠苎各居群的平均遗传距离为0.026,聚类分析结果发现7个居群明显分化为两支,居群3704,4704和3712为一支,其他居群为一支,等位酶资料获得的结果也得到形态和生殖特征的支持.3704、4704和3712在毛被、花朵大小、小坚果大小和颜色在均与其他居群有差异,繁育系统上,这三个居群表现出更明显的异交特性.小鱼仙草居群之间遗传分化甚至大于少数亲缘种之间的遗传分化,平均遗传距离达到0.034,但杂交实验发现,居群之间并不存在生殖隔离,不同的居群之间在叶片大小、叶形、苞片长短和花萼上唇中裂片的长短也有所不同.杭州石荠苎和小鱼仙草种内居群之间的形态和等位酶分化说明居群之问正处于分化和物种形成的早期阶段,生殖隔离还没有建立。 突变(包括染色体结构变异)的积累和繁育系统的转变是石荠苎属物种形成的基础,苏州石荠苎和石荠苎的分化是由于染色体结构变异的积累,具体表现在核型不对称性上的差异,造成生殖隔离.另一些比较明显的物种形成机制为:染色体多倍化,形成M.pauciflora;染色体结构变异,如随体染色体的臂间易位,产生M.cavaleriei;繁育系统由异交转变为自交产生M.chinensis.另外,在物种形成过程中,花期和生态位分化等促进了生殖隔离的完善. 石荠苎属形态上界限清楚,而且存在生殖隔离的种有八个,它们是小花荠苎(M.cavaleriei Levl.);石香薷 (M. chinensis Maxim.);小鱼仙草 (M. dianthera (Buch.-Hamilt. ex Roxb.) Maxim.);杭州石荠苎(M.hangchouensis Matsuda);日本石荠苎(M. japonica (Benth.) Maxim.);疏花荠苎(M. pauciflora (C. Y. Wu) C. Y. Wu et H. W. Li);石荠苎(M. punctulata (J.F. Gmelin) Nakai)和苏州石荠苎(M. soochouensis Matsuda). 石荠苎属的近缘属是香薷属(Elsholtzia)、香简草属(Keiskea)和紫苏属(Perilla)。石荠苎属与近缘属的分化大约在260万年之前,因为那时石荠苎属的祖先就发生了分化,形成以杭州石荠苎一一石香薷的祖先和以小花荠苎一一小鱼仙草的祖先为代表的两条进化主线,从香薷属和香简草属的现代分布式样-以及石荠苎属的分布特点推断,华东地区可能是石荠苎属的起源和演化的舞台,华东地区具有最大的种类多样性、变异性、特有性和多度.

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Cobia (Rachycentron canadum) is a pelagic, migratory species with a transoceanic distribution in tropical and subtropical waters. Recreational fishing pressure on Cobia in the United States has increased substantially during the last decade, especially in areas of its annual inshore aggregations, making this species potentially susceptible to overfishing. Although Cobia along the Atlantic and Gulf coasts of the southeastern United States are currently managed as a single fishery, the genetic composition of Cobias in these areas is unclear. On the basis of a robust microsatellite data set from collections along the U.S. Atlantic coast (2008–09), offshore groups were genetically homogenous. However, the 2 sampled inshore aggregations (South Carolina and Virginia) were genetically distinct from each other, as well as from the offshore group. The recapture of stocked fish within their release estuary 2 years after release indicates that some degree of estuarine fidelity occurs within these inshore aggregations and supports the detection of their unique genetic structure at the population level. These results complement the observed high site fidelity of Cobias in South Carolina and support a recent study that confirms that Cobia spawn in the inshore aggregations. Our increased understanding of Cobia life history will be beneficial for determining the appropriate scale of fishery management for Cobia.

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Lake sturgeon Acipenser fulvescens restoration is a priority throughout the Great Lakes basin, where sturgeon have been reduced to less than 1% of historic levels due to habitat degradation, overharvest, and fragmentation of spawning populations. The population parameters most important to long-term lake sturgeon persistence are unknown.

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Management agencies often use geopolitical boundaries as proxies for biological boundaries. In Hawaiian waters a single stock is recognized of common bottlenose dolphins, Tursiops truncatus, a species that is found both in open water and near-shore among the main Hawaiian Islands. To assess population structure, we photo-identified 336 distinctive individuals from the main Hawaiian Islands, from 2000 to 2006. Their generally shallow-water distribution, and numerous within-year and between-year resightings within island areas suggest that individuals are resident to the islands, rather than part of an offshore population moving through the area. Comparisons of identifications obtained from Kaua‘i/Ni‘ihau, O‘ahu, the “4-island area,” and the island of Hawai‘i showed no evidence of movements among these island groups, although movements from Kaua‘i to Ni‘ihau and among the “4-islands” were documented. A Bayesian analysis examining the probability of missing movements among island groups, given our sample sizes for different areas, indicates that interisland movement rates are less than 1% per year with 95% probability. Our results suggest the existence of multiple demographically independent populations of island-associated common bottlenose dolphins around the main Hawaiian islands.