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栖息地结构、营养结构与生态系统功能:凤梨科植物 - 昆虫群落中的交互作用

Habitat structure, trophic structure and ecosystem function: interactive effects in a bromeliad-insect community.

作者信息

Srivastava Diane S

机构信息

Department of Zoology and Biodiversity Research Centre, University of British Columbia, 6270 University Blvd., Vancouver, BC, Canada, V6T 1Z4.

出版信息

Oecologia. 2006 Sep;149(3):493-504. doi: 10.1007/s00442-006-0467-3. Epub 2006 Aug 1.

Abstract

Although previous studies have shown that ecosystem functions are affected by either trophic structure or habitat structure, there has been little consideration of their combined effects. Such interactions may be particularly important in systems where habitat and trophic structure covary. I use the aquatic insects in bromeliads to examine the combined effects of trophic structure and habitat structure on a key ecosystem function: detrital processing. In Costa Rican bromeliads, trophic structure naturally covaries with both habitat complexity and habitat size, precluding any observational analysis of interactions between factors. I therefore designed mesocosms that allowed each factor to be manipulated separately. Increases in mesocosm complexity reduced predator (damselfly larva) efficiency, resulting in high detritivore abundances, indirectly increasing detrital processing rates. However, increased complexity also directly reduced the per capita foraging efficiency of the detritivores. Over short time periods, these trends effectively cancelled each other out in terms of detrital processing. Over longer time periods, more complex patterns emerged. Increases in mesocosm size also reduced both predator efficiency and detritivore efficiency, leading to no net effect on detrital processing. In many systems, ecosystem functions may be impacted by strong interactions between trophic structure and habitat structure, cautioning against examining either effect in isolation.

摘要

尽管先前的研究表明生态系统功能受营养结构或栖息地结构的影响,但很少有人考虑它们的综合影响。这种相互作用在栖息地和营养结构共同变化的系统中可能尤为重要。我利用凤梨科植物中的水生昆虫来研究营养结构和栖息地结构对一项关键生态系统功能——碎屑处理——的综合影响。在哥斯达黎加的凤梨科植物中,营养结构自然地与栖息地复杂性和栖息地大小共同变化,这排除了对各因素间相互作用进行任何观测分析的可能性。因此,我设计了中宇宙,使每个因素都能被单独操控。中宇宙复杂性的增加降低了捕食者(豆娘幼虫)的效率,导致碎屑食性动物数量增加,间接提高了碎屑处理速率。然而,复杂性的增加也直接降低了碎屑食性动物的人均觅食效率。在短时间内,就碎屑处理而言,这些趋势实际上相互抵消了。在较长时间内,出现了更复杂的模式。中宇宙大小的增加也降低了捕食者效率和碎屑食性动物效率,导致对碎屑处理没有净影响。在许多系统中,生态系统功能可能受到营养结构和栖息地结构之间强烈相互作用的影响,这提醒我们不要孤立地研究任何一种影响。

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