Plankton size spectra as an indicator of larval success in Pacific sardine (Sardinops sagax)

IF 1.9 2区 农林科学 Q2 FISHERIES Fisheries Oceanography Pub Date : 2022-12-07 DOI:10.1111/fog.12620
Charles Hinchliffe, Paloma A. Matis, Hayden T. Schilling, Jason D. Everett, Anthony G. Miskiewicz, Pierre Pepin, Daniel S. Falster, Iain M. Suthers
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引用次数: 2

Abstract

Estimating demographic changes in a population requires the measurement of some minimal combination of several vital rates, including the flux of individuals into a population, the population growth rate, individual growth rates and mortality rates. For larval fishes, the ratio of instantaneous mortality to growth (i.e., their ‘recruitment potential’) has been used to make inferences of cohort trajectory where measures of population growth rates are not attainable. Attaining estimates of mortality and growth is an arduous task, and use of the recruitment potential metric has been limited. Here, we relate size spectra of the broader plankton community to the recruitment potential of simultaneously sampled larval Pacific sardines (Sardinops sagax), from three voyages off eastern Australia. As the size structure of a population is determined by the ratio of mortality to growth, and there is remarkable consistency in size spectra across ecosystems, we test the hypothesis that the recruitment potential of larval fish is reflected in community-level measures of plankton size spectra. Contrary to expectations, results from this study demonstrate a negative relationship between the slope of the plankton size spectra and the recruitment potential of larval Pacific sardine. However, we also demonstrate several other stronger relationships between recruitment potential and physical oceanographic parameters. Together, results suggest plankton size spectra are unlikely to reflect recruitment potential directly. Incorporating some size-based aspects of the plankton community into a broader modelling framework with a range of oceanographic parameters could further our ability to determine how larval success varies across a seascape.

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浮游生物大小谱作为太平洋沙丁鱼(Sardinos sagax)幼虫成功的指标
估计一个人口的人口变化需要衡量几个关键比率的最小组合,包括人口的流动率、人口增长率、个人增长率和死亡率。对于幼鱼,瞬时死亡与生长的比率(即它们的“招募潜力”)已被用于推断种群轨迹,而种群增长率的测量是无法获得的。获得死亡率和生长的估计是一项艰巨的任务,并且招募潜力指标的使用受到限制。在这里,我们将更广泛的浮游生物群落的大小光谱与同时取样的太平洋沙丁鱼幼虫(沙丁鱼sagax)的招募潜力联系起来,这些幼虫来自澳大利亚东部的三次航行。由于种群的大小结构是由死亡与生长的比率决定的,并且在不同的生态系统中大小光谱具有显著的一致性,因此我们验证了幼虫的招募潜力反映在浮游生物大小光谱的群落水平测量中的假设。与预期相反,本研究的结果表明浮游生物大小光谱的斜率与太平洋沙丁鱼幼虫的招募潜力之间存在负相关关系。然而,我们也证明了招聘潜力与海洋物理参数之间的其他几个更强的关系。总之,结果表明浮游生物的大小光谱不太可能直接反映招聘潜力。将浮游生物群落的一些基于尺寸的方面纳入具有一系列海洋学参数的更广泛的建模框架,可以进一步提高我们确定幼虫成功在海洋景观中如何变化的能力。
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来源期刊
Fisheries Oceanography
Fisheries Oceanography 农林科学-海洋学
CiteScore
5.00
自引率
7.70%
发文量
50
审稿时长
>18 weeks
期刊介绍: The international journal of the Japanese Society for Fisheries Oceanography, Fisheries Oceanography is designed to present a forum for the exchange of information amongst fisheries scientists worldwide. Fisheries Oceanography: presents original research articles relating the production and dynamics of fish populations to the marine environment examines entire food chains - not just single species identifies mechanisms controlling abundance explores factors affecting the recruitment and abundance of fish species and all higher marine tropic levels
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