Department of Horticulture, Iowa State University, Ames, Iowa 50011 USA.
Am J Bot. 2008 Nov;95(11):1454-65. doi: 10.3732/ajb.0800053. Epub 2008 Oct 8.
Dirca occidentalis is a rare shrub indigenous to only six counties near the San Francisco Bay in California, United States. We used intersimple sequence repeat (ISSR) markers and automated genotyping to probe 29 colonies of D. occidentalis from four geographically disjunct populations (East Bay, North Bay, Salmon Creek, and Peninsula) and used methods of phylogenetics and population genetics to model variation across the species. Results show that the four disjunct populations are genetically isolated and have undergone divergence. Phylogenetic analyses indicate that the East Bay population was the first to diverge, followed by the North Bay, then the Salmon Creek and Peninsula populations. This order of divergence suggests an intriguing natural history for D. occidentalis that is explained by the dynamic geological and climatic history of the Bay Area. Spatial genetic structure detected for the species suggests an interaction of four factors: limited seed dispersal, clonal regeneration, distances traveled by pollinators, and genetic isolation of the four populations. Genetic diversity within the North Bay and Salmon Creek populations is low, indicating poor ecological fitness and risk of decline. ISSRs resolved phylogeographic structure within D. occidentalis, results unattainable with ITS methods, and the integration of tools of phylogenetics and population biology led to an enhanced understanding of this endemic species.
Dirca occidentalis 是一种罕见的灌木,仅分布于美国加利福尼亚州旧金山湾区附近的六个县。我们使用简单重复序列间(ISSR)标记和自动基因分型技术,对来自四个地理上不连续种群(东湾、北湾、鲑鱼溪和半岛)的 29 个 Dirca occidentalis 殖民地进行了探测,并使用系统发育学和种群遗传学方法对该物种的变异进行了建模。结果表明,这四个不连续的种群在遗传上是隔离的,已经发生了分化。系统发育分析表明,东湾种群首先发生分歧,其次是北湾,然后是鲑鱼溪和半岛种群。这种分歧的顺序表明,Dirca occidentalis 有着引人入胜的自然历史,这可以用湾区动态的地质和气候历史来解释。对该物种的空间遗传结构的检测表明,有四个因素相互作用:有限的种子扩散、克隆再生、传粉者的传播距离以及四个种群的遗传隔离。北湾和鲑鱼溪种群的遗传多样性较低,表明生态适应性差,有衰退的风险。ISSRs 解析了 Dirca occidentalis 的系统地理结构,这是 ITS 方法无法实现的结果,而系统发育学和种群生物学工具的整合,使我们对这一特有物种有了更深入的了解。