Growth assessment of the sea urchin Pseudechinus magellanicus (Temnopleuridae) in coastal habitats of central Patagonia, Argentina

IF 1.1 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY
Damián Gaspar Gil, Héctor Eliseo Zaixso
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Abstract

Pseudechinus magellanicus is an ecologically important and small sea urchin in coastal and nearshore habitats off southern South America. We provide the first growth assessment for the species using tag (calcein) and recapture procedures in central Patagonia (Argentina). The individual growth rate of P. magellanicus ranged 0.05–1.3 mm year−1. The Brody–Bertalanffy and Richards growth models provided asymptotic maximum diameters of 29.89 and 26.01 mm, respectively. Both models yielded low values for the growth constant (k), with 0.046 (Brody–Bertalanffy) and 0.062 (Richards). Maximum instantaneous growth rate was estimated at 1.36 mm year−1 for the Brody–Bertalanffy model, and 2.69 mm year−1 for the Richards model. Model selection (corrected Akaike information criterion) showed a slight better fit for the Brody–Bertalanffy growth model compared to the Richards model. A significant variability in growth was observed within the studied population, which can be attributed to genetic factors and micro-environmental effects. P. magellanicus displays a combination of slow growth and small body size, with the lowest recorded growth performance index (θ = 3.72) recorded so far in sea urchins. The species has a long lifespan, with the most common adult sizes estimated to range from 15 to 21 years according to the Brody–Bertalanffy model. Due to the broad geographic distribution and occupation of contrasting habitats, further studies are necessary to explore growth of P. magellanicus under different environmental conditions and/or along a bathymetric gradient.

阿根廷巴塔哥尼亚中部沿海栖息地海胆 Pseudechinus magellanicus(Temnopleuridae)的生长评估
Pseudechinus magellanicus 是南美洲南部沿海和近岸栖息地的一种具有重要生态意义的小型海胆。我们首次在巴塔哥尼亚中部(阿根廷)使用标签(钙钛矿)和重捕程序对该物种的生长情况进行了评估。P. magellanicus的个体生长率为每年0.05-1.3毫米。布罗迪-贝塔朗菲生长模型和理查兹生长模型提供的渐近最大直径分别为 29.89 毫米和 26.01 毫米。两个模型的生长常数(k)值都较低,分别为 0.046(布罗迪-贝塔朗菲)和 0.062(理查兹)。布罗迪-贝塔朗菲模型的最大瞬时增长率估计为 1.36 毫米/年,理查兹模型的最大瞬时增长率估计为 2.69 毫米/年。模型选择(修正的 Akaike 信息标准)显示,与理查兹模型相比,布罗迪-贝塔朗菲生长模型的拟合度稍高。在所研究的种群中观察到了明显的生长变异,这可归因于遗传因素和微环境影响。麦哲伦海胆生长缓慢,体型较小,其生长性能指数(θ = 3.72)是迄今为止海胆中最低的。该物种寿命较长,根据布罗迪-贝塔朗菲模型,最常见的成体大小估计为 15 至 21 年。由于麦哲伦海胆的地理分布广泛,栖息地对比强烈,因此有必要开展进一步的研究,探讨其在不同环境条件下和/或沿水深梯度生长的情况。
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来源期刊
CiteScore
2.30
自引率
8.30%
发文量
68
审稿时长
3-8 weeks
期刊介绍: JMBA is an international journal, publishing original research on all aspects of marine biology. It includes pioneering work taking place today on major issues concerning marine organisms and their environment. Subjects covered include: ecological surveys and population studies of marine communities; physiology and experimental biology; taxonomy, morphology and life history of marine animals and plants; and chemical and physical oceanographic work. Included with 2010 online subscriptions: Marine Biodiversity Records.
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