4.7 Article

Influence of invasive palms on terrestrial arthropod assemblages in desert spring habitat

期刊

BIOLOGICAL CONSERVATION
卷 144, 期 1, 页码 518-525

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biocon.2010.10.007

关键词

Desert springs; Invasive palms; Isolated habitats; Indirect effects; Shrubland; Terrestrial arthropod assemblage

资金

  1. National Park Service through the Great Basin Cooperative Ecosystems Studies Unit [J8R07090004]

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Invasive plants can eliminate native flora and ultimately have negative indirect effects on fauna and the functional ecology of ecosystems, but understanding of these cascading effects on arthropod assemblages is poor. Desert spring habitats are small, isolated landscape elements that are literal oases for flora and fauna and support high diversity assemblages; invasive palms can colonize desert springs and form monocultures. In an effort to understand effects of these invasive trees on higher terrestrial trophic levels at springs, we contrasted assemblage structure of terrestrial arthropods in native vegetation versus invasive palm habitat. We sampled arthropods in paired palm and native habitat at 10 springs in Death Valley National Park, California, USA, during both spring and fall growing seasons using suction sampling. The invading palms Phoenix dactylifera L and Washingtonia filifera (Linden ex Andre) supported a mean of only one-sixth of the arthropod abundance, one-third of the species richness, and half the family richness of native habitat. Almost all orders were less abundant in palms, and most families and species were either absent or virtually absent in palm habitat. Both live and dead palm leaves were depauperate, and season and block effects were minimal. Impacts of these visually striking invasives clearly go beyond monopolization of ground cover, and invading palms appear capable of reshaping the functional ecology of desert springs. If control efforts are undertaken, we recommend complete removal of palms, because killed but standing ghost palms and associated thatch persist for many years and will continue to provide poor arthropod habitat and prevent native plant establishment. (C) 2010 Elsevier Ltd. All rights reserved.

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