外来与本地小龙虾:物种身份在生态系统功能中的作用

N. Usio, Kana Suzuki, M. Konishi, S. Nakano
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引用次数: 26

摘要

在日本北部,一种外来的小龙虾(信号小龙虾;太平洋小龙虾(Pacifastacus leniusculus)正在取代日本唯一的本土小龙虾(Cambaroides japonicus),后者是日本特有的。我们通过实验测试了这两种小龙虾在溪流栖息地的生态系统功能方面是否具有相似的作用。研究了外来和本地小龙虾对碎屑基食物网的影响。在实验中,两种小龙虾都不影响微生物条件下橡树叶的分解率。相比之下,在非小龙虾无脊椎动物生物量中占主导地位的片足类Jesso-gammarus jesoensis在这两种小龙虾的存在下显著减少。因此,在没有小龙虾的情况下,小龙虾对叶片分解的影响可能被这些大型片脚类动物的叶片加工活动所掩盖。总体而言,Pacifastacus对叶片加工和无脊椎动物定植的单位生物量影响与Cambaroides相当。在没有其他无脊椎动物的情况下,研究了10种河岸植物的叶片加工速率、颗粒有机物(POM)的产生和营养物质的排泄在小龙虾物种之间是否存在差异。小龙虾对叶片加工的影响因植物种类而异,反映了叶片偏好的差异。对个体养分排泄率的比较表明,cambarides的氨和磷酸盐排泄率高于Pacifastacus。此外,氨排泄率与螯虾生物量成正比,而与螯虾生物量不成正比。综上所述,当生物量相似时,这两种小龙虾在河流食物网中的作用相似。然而,当选择不同的河岸物种作为凋落叶的来源时,它们作为叶片处理者的作用和营养物质的排泄速率有所不同。因此,外来和本地小龙虾之间的物种替代可能会对生态系统过程产生不同的后果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alien vs. endemic crayfish: roles of species identity in ecosystem functioning
In northern Japan, an alien crayfish species (signal crayfish; Pacifastacus leniusculus) is replacing Japan's only native crayfish species (Cambaroides japonicus) that is endemic to the country. We tested experimentally if these two crayfish species had similar roles in terms of ecosystem functioning in stream habitats. Experiments were performed to examine the impacts of alien and endemic crayfish on detritus-based food webs. During the experiment, neither crayfish species affected rates of breakdown of microbially conditioned oak leaves. In contrast, the amphipod Jesso-gammarus jesoensis, which dominated the non-crayfish invertebrate biomass, was significantly reduced in the presence of the two crayfish species. Thus, effects of crayfish on leaf breakdown were probably masked by the leaf processing activities of these large amphipods in the absence of crayfish. Overall, per-unit biomass impacts of Pacifastacus on leaf processing and invertebrate colonisation of leaves were comparable to those by Cambaroides. Laboratory experiments were performed to test whether rates of leaf processing of 10 riparian plant species, particulate organic matter (POM) production and nutrient excretion differed between crayfish species in the absence of other invertebrates. Although POM production rates did not differ between crayfish species, crayfish impacts on leaf processing differed depending on plant species reflecting differential leaf preference. Comparisons of individual nutrient excretion rates revealed that ammonia and phosphate excretion rates were higher in Cambaroides compared with Pacifastacus. Further, ammonia excretion rates were proportional to crayfish biomass in Cambaroides but not in Pacifastacus. Taken together, the two crayfish species had similar roles in stream food webs when biomass was similar. However, their roles as leaf processors and excretion rates of nutrients differed when there was a choice among different riparian species as sources of leaf litter. Species replacement between alien and endemic crayfish may therefore result in differential consequences for ecosystem processes.
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