Large-scale serial replacement of invasive tench (Tinca tinca) by invasive carp (Cyprinus carpio) in the presence of redfin perch (Perca fluviatilis) in the Murray-Darling River system, Australia

IF 2.8 3区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION Biological Invasions Pub Date : 2024-08-05 DOI:10.1007/s10530-024-03409-z
Matthew P. Hill, Peter Caley, Ivor Stuart, Richard P. Duncan, David M. Forsyth
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Abstract

Ecosystems worldwide are increasingly being invaded by multiple species, and the rate of biological invasion is accelerating, leading to more interactions among invasive species. One such interaction that has received little attention is the phenomenon of ‘serial replacement’ or ‘over-invasion’, where an established invasive species is supplanted by a second invasive species. Understanding this interaction is important as controlling the second species could inadvertently lead to an increase in the abundance of the first species. We used a hierarchical state-space model to analyse changes in annual abundances (commercial catch-per-unit-effort) of three invasive fish species, tench (Tinca tinca), common carp (Cyprinus carpio) and redfin perch (Perca fluviatilis), in the Murray-Darling River system (MDRS), Australia between 1954–2002. Tench were present at low abundances until the mid-1970 s, before declining to the point of no commercial catch post-1989. This rapid decline coincided with a significant increase in carp abundance, suggesting that carp may have driven the tench decline through habitat modification (particularly the destruction of aquatic plants), consistent with findings from European studies that show the disappearance of tench from ponds with intensive carp farming. Redfin perch populations, were inferred to be much less impacted by the invading carp population. While carp were present in the MDRS for the duration of the study, the rapid increase in carp abundance in the early 1970 s coincided with the introduction of a specific genetic lineage—the “Boolarra strain”. Our analysis provides compelling evidence of serial replacement of long-established tench by invading common carp triggered by the introduction of a novel carp strain.

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在澳大利亚墨累-达令河水系,入侵鲤鱼(Cyprinus carpio)在红鳍鲈鱼(Perca fluviatilis)的影响下大规模连续取代入侵佃鱼(Tinca tinca)
全球生态系统正日益受到多种物种的入侵,生物入侵的速度也在加快,导致入侵物种之间的相互作用增多。其中一种很少受到关注的相互作用是 "序列替代 "或 "过度入侵 "现象,即一个已确定的入侵物种被第二个入侵物种取代。了解这种相互作用非常重要,因为控制第二个物种可能会无意中导致第一个物种数量的增加。我们使用分层状态空间模型分析了 1954-2002 年间澳大利亚墨累-达令河水系(MDRS)中三种入侵鱼类--tench(Tinca tinca)、鲤鱼(Cyprinus carpio)和红鳍鲈(Perca fluviatilis)--的年丰度变化(单位产量商业渔获量)。直到 20 世纪 70 年代中期,鲈鱼的丰度一直很低,1989 年以后,鲈鱼的丰度下降到没有商业捕捞的地步。这种快速下降与鲤鱼数量的显著增加相吻合,表明鲤鱼可能是通过改变栖息地(尤其是破坏水生植物)导致鲈鱼数量下降的,这与欧洲的研究结果一致,欧洲的研究结果表明,在密集养殖鲤鱼的池塘中,鲈鱼已经消失。据推断,红鳍鲈种群受鲤鱼入侵的影响要小得多。虽然鲤鱼在研究期间一直存在于 MDRS 中,但在 20 世纪 70 年代早期,鲤鱼数量迅速增加,这与特定基因品系--"Boolarra 品系 "的引入不谋而合。我们的分析提供了令人信服的证据,证明鲤鱼新品系的引入引发了鲤鱼入侵,从而连续取代了长期存在的佃鱼。
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来源期刊
Biological Invasions
Biological Invasions 环境科学-生态学
CiteScore
6.00
自引率
6.90%
发文量
248
审稿时长
3 months
期刊介绍: Biological Invasions publishes research and synthesis papers on patterns and processes of biological invasions in terrestrial, freshwater, and marine (including brackish) ecosystems. Also of interest are scholarly papers on management and policy issues as they relate to conservation programs and the global amelioration or control of invasions. The journal will consider proposals for special issues resulting from conferences or workshops on invasions.There are no page charges to publish in this journal.
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