Lifting the Vendace, Coregonus albula, on the Life Table: Survival, Growth and Reproduction in Different Life-Stages during Very High and Low Abundance Regimes

IF 0.9 4区 生物学 Q4 ECOLOGY Annales Zoologici Fennici Pub Date : 2021-09-06 DOI:10.5735/086.058.0406
T. Marjomäki, P. Valkeajärvi, J. Karjalainen
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引用次数: 3

Abstract

We analyzed the variability in vendace population parameters in the context of a life table. Parameters related to growth, fecundity and survival were estimated for post-recruitment (age > 1 growing season) life stages of Lake Southern Konnevesi vendace in both very high and low population abundance regimes. Pre-recruitment survival producing population stability was then determined. We found a very strong compensatory density dependence in growth, fecundity and survival: during low abundance, a lifetime reproductive output of a female was almost 20 times that of the abundant regime. To maintain the low abundance regime, pre-recruitment survival must counterbalance it by decreasing to a very low level. Potential drivers of high variability in pre-recruit survival and potential for depensation, Allee effect, are discussed, as well as the implications of the results on fisheries management and risk of extinction due to anthropogenic stressors such as global warming or extensive predator stocking.
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在生命表上解除宿怨:在非常高和低丰度制度下不同生命阶段的生存、生长和繁殖
我们在生命表的背景下分析了vendace种群参数的可变性。在种群丰度非常高和非常低的情况下,估计了南孔奈韦西-文达斯湖在招募后(年龄>1个生长季节)生活阶段与生长、繁殖力和存活相关的参数。然后确定招募前的存活率,产生种群稳定性。我们发现,在生长、繁殖力和存活方面存在非常强的补偿密度依赖性:在低丰度期间,雌性一生的繁殖产量几乎是丰度时期的20倍。为了维持低丰度状态,招募前的存活率必须通过降低到非常低的水平来抵消它。讨论了招募前存活率高变异性的潜在驱动因素和失代偿的可能性,即Allee效应,以及研究结果对渔业管理的影响和因全球变暖或大量捕食者放养等人为压力而导致的灭绝风险。
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来源期刊
Annales Zoologici Fennici
Annales Zoologici Fennici 生物-动物学
CiteScore
2.40
自引率
14.30%
发文量
10
审稿时长
>12 weeks
期刊介绍: Annales Zoologici Fennici publishes mainly original research reports, but also in-depth reviews and commentaries on all aspects of animal ecology and evolution, and fields related to them. Our aim is to promote papers which focus on the interactions among various components in the past and present environments by using integrative and cross-disciplinary approaches. This may be achieved by employing tools from different fields of research, such as (but not restricted to): ecology and paleoecology, molecular ecology and phylogeography, conservation biology, human-induced contemporary evolution and wildlife management, animal behaviour and interactions (including recognition systems and mechanisms), paleontology (except systematics and taxonomy) and evolution, bioenergetics.
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