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在热带气候下,水的竞争和一个泛热带物种对岛屿特有种的快速排斥。

Competition for water and rapid exclusion of an island endemic by a pantropical species in a tropical climate.

机构信息

Department of Botany, University of Brasilia, Brasília-DF, 70910-970, Brazil.

Division of Biological Sciences, Wildlife Biology, and the Institute on Ecosystems, University of Montana, Missoula, MT, 59812, Brazil.

出版信息

Oecologia. 2023 Apr;201(4):901-914. doi: 10.1007/s00442-023-05352-7. Epub 2023 Mar 27.

Abstract

Water availability has major effects on community structure and dynamics globally, yet our understanding of competition for water in the tropics is limited. On the tropical Trindade Island, we explored competition for water in the context of the rapid exclusion of an endemic sedge, Cyperus atlanticus (Cyperaceae), by a pantropical, N-fixing shrub, Guilandina bonduc (Fabaceae). Guilandina patches were generally surrounded by rings of bare soil, and dead Cyperus halos commonly surrounded these bare zones. With geo-referenced measurements, we showed that Guilandina patches and bare soil zones rapidly expanded and replaced adjacent Cyperus populations. We found that soil water potentials were much lower in bare soils than soils under Guilandina or Cyperus, and that leaf water potentials of Cyperus plants were lower when co-occurring with Guilandina than when alone. When Guilandina was removed experimentally, Cyperus populations expanded and largely covered the bare soil zones. Our results indicate that when Guilandina establishes, its root systems expand beyond its canopies and these roots pull water from soils beneath Cyperus and kill it, creating bare zone halos, and then Guilandina expands and repeats the process. This scenario indicates rapid competitive exclusion and displacement of an endemic by a common pantropical species, at least in part through competition for water.

摘要

水资源的可获得性对全球的群落结构和动态有重大影响,但我们对热带地区水资源竞争的理解有限。在热带特林达德岛上,我们在快速排除一种地方性莎草(Cyperus atlanticus,莎草科)的背景下,探索了水资源竞争,这种莎草被一种泛热带、固氮的灌木——Guilandina bonduc(豆科)所取代。Guilandina 斑块通常被一圈裸露的土壤包围,而死 Cyperus 光环通常围绕着这些裸露的区域。通过地理参考测量,我们表明 Guilandina 斑块和裸露土壤区迅速扩张并取代了相邻的 Cyperus 种群。我们发现裸露土壤中的土壤水势明显低于 Guilandina 或 Cyperus 下的土壤水势,而且当 Cyperus 与 Guilandina 共存时,其叶片水势低于单独存在时。当 Guilandina 被实验性移除时,Cyperus 种群扩张并在很大程度上覆盖了裸露土壤区。我们的结果表明,当 Guilandina 建立时,它的根系会扩展到树冠之外,并从 Cyperus 下面的土壤中抽取水分,导致其死亡,并形成裸露区光环,然后 Guilandina 扩展并重复这个过程。这种情况表明,一种地方性物种至少部分通过对水资源的竞争,被一种常见的泛热带物种迅速排除和取代。

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