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捕食风险抑制了大小结构和同类相食之间的正反馈。

Predation risk suppresses the positive feedback between size structure and cannibalism.

机构信息

Teshio Experimental Forest, Field Science Center for Northern Biosphere, Hokkaido University, Horonobe, Hokkaido 098-2943, Japan.

出版信息

J Anim Ecol. 2011 Nov;80(6):1278-87. doi: 10.1111/j.1365-2656.2011.01871.x. Epub 2011 Jun 13.

Abstract

1. Cannibalism can play a prominent role in the structuring and dynamics of ecological communities. Previous studies have emphasized the importance of size structure and density of cannibalistic species in shaping short- and long-term cannibalism dynamics, but our understanding of how predators influence cannibalism dynamics is limited. This is despite widespread evidence that many prey species exhibit behavioural and morphological adaptations in response to predation risk. 2. This study examined how the presence and absence of predation risk from larval dragonflies Aeshna nigroflava affected cannibalism dynamics in its prey larval salamanders Hynobius retardatus. 3. We found that feedback dynamics between size structure and cannibalism depended on whether dragonfly predation risk was present. In the absence of dragonfly risk cues, a positive feedback between salamander size structure and cannibalism through time occurred because most of the replicates in this treatment contained at least one salamander larvae having an enlarged gape (i.e. cannibal). In contrast, this feedback and the emergence of cannibalism were rarely observed in the presence of the dragonfly risk cues. Once salamander size divergence occurred, experimental reversals of the presence or absence of dragonfly risk cues did not alter existing cannibalism dynamics as the experiment progressed. Thus, the effects of risk on the mechanisms driving cannibalism dynamics likely operated during the early developmental period of the salamander larvae. 4. The effects of dragonfly predation risk on behavioural aspects of cannibalistic interactions among hatchlings may prohibit the initiation of dynamics between size structure and cannibalism. Our predation trials clearly showed that encounter rates among hatchlings and biting and ingestion rates of prospective prey by prospective cannibals were significantly lower in the presence vs. absence of dragonfly predation risk even though the size asymmetry between cannibals and victims was similar in both risk treatments. These results suggest that dragonfly risk cues first suppress cannibalism among hatchlings and then prevent size variation from increasing through time. 5. We suggest that the positive feedback dynamics between size structure and cannibalism and their modification by predation risk may also operate in other systems to shape the population dynamics of cannibalistic prey species as well as overall community dynamics.

摘要
  1. 同类相食在生态群落的结构和动态中起着重要作用。以前的研究强调了捕食者的大小结构和密度在塑造短期和长期同类相食动态方面的重要性,但我们对捕食者如何影响同类相食动态的理解是有限的。尽管有广泛的证据表明,许多猎物物种会表现出行为和形态上的适应,以应对捕食风险。

  2. 本研究探讨了幼虫蜻蜓 Aeshna nigroflava 的捕食风险的存在与否如何影响其猎物幼虫蝾螈 Hynobius retardatus 的同类相食动态。

  3. 我们发现,大小结构和同类相食之间的反馈动态取决于蜻蜓捕食风险是否存在。在没有蜻蜓风险线索的情况下,随着时间的推移,蝾螈大小结构和同类相食之间会出现正反馈,因为在这种处理的大多数重复中,至少有一只蝾螈幼虫具有扩大的口裂(即同类相食)。相比之下,在存在蜻蜓风险线索的情况下,这种反馈和同类相食的出现很少观察到。一旦蝾螈大小出现分歧,随着实验的进行,实验中反转存在或不存在蜻蜓风险线索并不会改变现有的同类相食动态。因此,风险对驱动同类相食动态机制的影响可能在蝾螈幼虫的早期发育阶段发挥作用。

  4. 蜻蜓捕食风险对幼蝾螈之间同类相食行为方面的影响可能会阻止大小结构和同类相食之间的动态关系的启动。我们的捕食实验清楚地表明,即使在两种风险处理中,捕食者和潜在猎物之间的幼蝾螈遭遇率以及潜在捕食者对潜在猎物的咬食和吞食率在存在蜻蜓捕食风险的情况下明显低于不存在蜻蜓捕食风险的情况。这些结果表明,蜻蜓风险线索首先抑制了幼蝾螈之间的同类相食,然后阻止了大小变异随时间的增加。

  5. 我们认为,大小结构和同类相食之间的正反馈动态以及捕食风险对其的修饰也可能在其他系统中起作用,以塑造同类相食猎物物种的种群动态以及整个群落动态。

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