Suppr超能文献

捕食者扩散影响猪笼草微生物元群落中捕食者的分布,但不影响猎物多样性。

Predator dispersal influences predator distribution but not prey diversity in pitcher plant microbial metacommunities.

作者信息

Cuellar-Gempeler Catalina, terHorst Casey P, Mason Olivia U, Miller Thomas

机构信息

Department of Biological Sciences, California State Polytechnic University, Humboldt, California, USA.

Department of Biology, California State University, Northridge, California, USA.

出版信息

Ecology. 2023 Apr;104(4):e3912. doi: 10.1002/ecy.3912. Epub 2023 Jan 26.

Abstract

The spatial distribution of predators can affect both the distribution and diversity of their prey. Therefore, differences in predator dispersal ability that affect their spatial distribution, could also affect prey communities. Here, we use the microbial communities within pitcher plant leaves as a model system to test the relationship between predator (protozoa) dispersal ability and distribution, and its consequences for prey (bacteria) diversity and composition. We hypothesized that limited predator dispersal results in clustered distributions and heterogeneous patches for prey species, whereas wide predator dispersal and distribution could homogenize prey metacommunities. We analyzed the distribution of two prominent bacterivore protozoans from a 2-year survey of an intact field of Sarracenia purpurea pitcher plants, and found a clustered distribution of Tetrahymena and homogeneous distribution of Poterioochromonas. We manipulated the sources of protozoan colonists and recorded protozoan recruitment and bacterial diversity in target leaves in a field experiment. We found the large ciliate, Tetrahymena, was dispersal limited and occupied few leaves, whereas the small flagellate Poterioochromonas was widely dispersed. However, the bacterial communities these protozoans feed on was unaffected by clustering of Tetrahymena, but likely influenced by Poterioochromonas and other bacterivores dispersing in the field. We propose that bacterial communities in this system are structured by a combination of well dispersed bacterivores, bacterial dispersal, and bottom-up mechanisms. Clustered predators could become strong drivers of prey communities if they were specialists or keystone predators, or if they exerted a dominant influence on other predators in top-down controlled systems. Linking dispersal ability within trophic levels and its consequences for trophic dynamics can lead to a more robust perspective on trophic metacommunities.

摘要

捕食者的空间分布会影响其猎物的分布和多样性。因此,影响捕食者空间分布的扩散能力差异,也可能影响猎物群落。在此,我们以猪笼草叶内的微生物群落作为模型系统,来测试捕食者(原生动物)扩散能力与分布之间的关系,以及其对猎物(细菌)多样性和组成的影响。我们假设,捕食者扩散受限会导致猎物物种分布呈聚集状态且斑块各异,而广泛的捕食者扩散和分布则会使猎物集合群落趋于同质化。我们通过对一片完整的紫瓶子草猪笼草田进行为期两年的调查,分析了两种主要的食细菌原生动物的分布,发现四膜虫呈聚集分布,而赭纤虫呈均匀分布。在一项田间实验中,我们操控了原生动物殖民者的来源,并记录了目标叶片中的原生动物补充情况和细菌多样性。我们发现大型纤毛虫四膜虫扩散受限,占据的叶片较少,而小型鞭毛虫赭纤虫则广泛扩散。然而,这些原生动物所捕食的细菌群落并未受到四膜虫聚集的影响,但可能受到了赭纤虫以及田间其他食细菌生物扩散的影响。我们认为,该系统中的细菌群落是由分布良好的食细菌生物、细菌扩散以及自下而上的机制共同构建而成的。如果聚集的捕食者是特化物种或关键捕食者,或者在自上而下控制的系统中对其他捕食者施加了主导影响,那么它们可能会成为猎物群落的强大驱动力。将营养级内的扩散能力及其对营养动态的影响联系起来,能够为营养集合群落提供更全面的视角。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验