...
首页> 外文期刊>Journal of Biogeography >Lake expansion elevates equilibrium diversity via increasing colonization
【24h】

Lake expansion elevates equilibrium diversity via increasing colonization

机译:湖膨胀通过增加殖民化提升了均衡多样性

获取原文
获取原文并翻译 | 示例
           

摘要

Aim Rates of colonization, speciation and extinction determine species richness and endemism in insular systems. The general dynamic model of island biogeography (GDM) predicts that speciation and extinction rates depend on island area and elevation via their control on ecological limits to diversification and therefore covary with an island's geological history. Additionally, the colonization rate may increase with area and elevation through the 'target effect', which can be mediated by reduced 'environmental filtering'. Here we test whether the area and depth expansion of an island-like ecosystem, a lake, caused a shift in diversity dynamics. Location Lake Biwa, Japan, whose geological history and biota are well documented. Taxon Fishes. Methods We extended the phylogenetic island biogeography framework DAISIE (Dynamic Assembly of Island biota through Speciation, Immigration and Extinction) to accommodate time-shifts in macroevolutionary rates and in carrying capacity. Using phylogenetic information on colonization and speciation times for the complete Lake Biwa fish community (70 taxa), we tested for a shift in macroevolutionary assembly rates and reconstructed the temporal diversity trajectory in the lake. We assessed the power to identify a shift through a wide range of scenarios and benchmarked against simulated fossil records. Results We detected an increase in colonization rate of fishes at 0.2 million years ago (Ma), with limited support for the existence of ecological limits. The reconstructed diversity trajectory was close to a source-sink equilibrium diversity prior to the shift and remained well below a new shift-driven elevated equilibrium thereafter. We found sufficient power to identify an increase in colonization rate up to 1.5 Ma, whereas extinction concealed the signal of earlier shifts. Main conclusions The fish diversity dynamics of Lake Biwa show a response to changes in area and depth and phylogenies carry a signature of these changes. The detected increase in colonization rate following Lake Biwa's expansion, elevating the fish diversity, is unlikely due to a predicted increase in ecological limits feeding back on colonization rate. We therefore call for (additional) explanations: the target effect, whereby larger islands attract more species, and reduced environmental filtering due to higher habitat diversity associated with increased lake area/depth.
机译:瞄准殖民化,物种和灭绝的目标率确定了绝缘系统中的物种丰富性和民族。岛屿生物地理(GDM)的一般动态模型预测,通过控制生态限制对多元化的控制等岛屿地区和灭绝率取决于岛屿地区和海拔,因此与岛屿的地质史进行科学。另外,通过“目标效应”,殖民化速率可能随面积和升高而增加,这可以通过减少的“环境过滤”来介导。在这里,我们测试岛屿类似湖泊的区域和深度扩展,湖泊,导致多样性动态转变。 Lake Biwa,日本的地质历史和Biota记录了湖泊。分类鱼类。方法延伸了系统发育岛生物地理框架Daisie(通过品种,移民和灭绝的岛屿生物群的动态组装),以适应大规模率和承载能力的时变。使用系统发育信息有关完整的湖泊Biwa鱼群(70个分类赛)的定植和物种时间(70个分类赛),我们在宏观调度汇率的转变中进行了测试,并重建了湖中的时间分集轨迹。我们评估了通过广泛的情景识别转变的权力,并与模拟化石记录进行基准测试。结果我们检测到90万年前鱼类的殖民化率的增加,有限的支持存在生态限制。重建的分集轨迹在换档之前接近源极宿平衡分集,并且仍然远低于新的移位驱动的升高的平衡。我们发现足够的力量来识别殖民化率的增加,高达1.5 mA,而灭绝隐藏着较早偏移的信号。主要结论BIWA湖的鱼类多样性动态表明对面积和深度和系统发育的反应携带这些变化的签名。琵琶湖扩张后的殖民化率的检测到增加,提升鱼类多样性,这是由于喂养殖民化率的生态限制的预测增加,这不太可能。因此,我们呼吁(附加)解释:目标效果,其中大岛屿吸引了更多物种,并且由于与湖泊区域/深度增加相关的栖息地多样性,由于更高的栖息地多样性而降低了环境过滤。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号