保护物种小龙虾蛙(Rana areolata)的密度依赖适应度属性和携带效应

IF 2.6 Q2 Agricultural and Biological Sciences Copeia Pub Date : 2020-07-21 DOI:10.1643/CH-19-246
Rochelle M Stiles, Vanessa C. K. Terrell, J. Maerz, M. Lannoo
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引用次数: 3

摘要

表现出复杂生活史的两栖动物在水生栖息地获得的健康属性已被证明通过陆生幼体级联到成年,这种现象被称为遗留效应。我们利用一组田间围挡实验和一系列田间数据,探索了小龙虾蛙(Rana areolata)的密度相关适应度属性和结转效应。使用田间围栏,我们假设1)在高密度下,种内竞争会产生更小的小龙虾蛙幼体,需要更长的时间才能变质;2) 在高密度下,种间竞争也会产生更小的小龙虾蛙幼体,它们需要更长的时间才能变形;3)脊椎动物(蝾螈)捕食小龙虾蛙幼虫会降低存活率,但通过释放竞争压力会产生相对较大的蝌蚪,这些蝌蚪会更早变形。此外,我们假设4)这些围栏结果将适用于野外数据,并且新变形的小龙虾蛙的适应性属性将延续到首次繁殖的成虫身上。我们的结果证实了所有四个假设。具体而言,在小龙虾蛙中,在高密度下,种内和种间竞争都降低了变态时的体型(长度和质量)(假设1和2),捕食降低了存活率,增加了变态时体型(假设3)。最后,我们观察到密度依赖性适应度对新变态小龙虾蛙幼鱼体型(长度和质量)的影响,以及从幼虫阶段对幼鱼存活率、成虫体型和繁殖成虫数量的影响(假设4)。在没有捕食者的情况下,高密度的种内和种间竞争对手对小龙虾蛙幼虫的存活率没有影响。我们还提出了补偿效应的提示性证据。我们讨论了这些相互作用模式的潜在机制,以及这些关系在为旨在确保该物种未来受到保护的管理指南提供信息方面的作用。
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Density-Dependent Fitness Attributes and Carry-Over Effects in Crawfish Frogs (Rana areolata), a Species of Conservation Concern
Fitness attributes acquired in aquatic habitats by amphibians exhibiting complex life histories have been shown to cascade through terrestrial juveniles into adulthood, a phenomenon termed carry-over effects. We explored density-dependent fitness attributes and carry-over effects in Crawfish Frogs (Rana areolata) using a set of field enclosure experiments and a series of field data. Using field enclosures, we hypothesized that 1) at high densities, intraspecific competition would produce smaller Crawfish Frog juveniles that took longer to metamorphose; 2) at high densities, interspecific competition would also produce smaller Crawfish Frog juveniles that took longer to metamorphose; and 3) vertebrate (ambystomatid salamander) predation on Crawfish Frog larvae would reduce survivorship, but by releasing competition pressure would produce relatively larger tadpoles that metamorphosed earlier. Further, we hypothesized 4) that these enclosure results would apply to field data, and that fitness attributes in newly metamorphosed Crawfish Frogs would carry over to first-time breeding adults. Our results confirmed all four hypotheses. Specifically, in Crawfish Frogs, at high densities, both intra- and interspecific competition reduced size (length and mass) at metamorphosis (hypotheses 1 and 2), and predation reduced survivorship and increased size at metamorphosis (hypothesis 3). Finally, we observed density-dependent fitness effects on newly metamorphosed Crawfish Frog juvenile size (length and mass), and carry-over effects from the larval stage on juvenile survival, adult size, and breeding adult numbers (hypothesis 4). In the absence of predators, high densities of intra- and interspecific competitors had no effect on Crawfish Frog larval survivorship. We also present suggestive evidence for compensatory effects. We discuss the potential mechanisms underlying the patterns of these interactions, as well as the role of these relationships in informing management guidelines intended to ensure the future of this species of conservation concern.
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来源期刊
Copeia
Copeia 生物-动物学
CiteScore
2.10
自引率
0.00%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Founded in 1913, Copeia is a highly respected international journal dedicated to the publication of high quality, original research papers on the behavior, conservation, ecology, genetics, morphology, evolution, physiology, systematics and taxonomy of extant and extinct fishes, amphibians, and reptiles. Copeia is published electronically and is available through BioOne. Articles are published online first, and print issues appear four times per year. In addition to research articles, Copeia publishes invited review papers, book reviews, and compiles virtual issues on topics of interest drawn from papers previously published in the journal.
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