A unified framework and terminology for reproductive traits integral to understanding fish population productivity

IF 1.8 3区 农林科学 Q2 FISHERIES
Susan K. Lowerre-Barbieri, Nancy J. Brown-Peterson, David M. Wyanski, Heather E. Moncrief-Cox, Kevin J. Kolmos, Hayden S. Menendez, Beverly K. Barnett, Claudia Friess
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Abstract

Objective

This paper highlights the complexity of marine fish spawner–recruit systems and how they vary across species and ecosystems while providing a universal terminology and framework to evaluate fish reproduction. We emphasize the gonadal development important to assess maturity, fecundity, where and when fish spawn, and transition and sex assignment in protogynous species.

Methods

We review and compare reproductive traits in warmwater and coldwater fishes. Reproductive phases for both sexes and protogynous species are defined and histological micrographs presented. New methods are developed to assess maturity; spawning seasonality; peak spawning; and, for protogynous species, sex assignment.

Result

Protogyny, extended spawning seasons, and indeterminate fecundity are more common in warmwater than coldwater systems. The following reproductive phases are defined as immature, transitional (sex change), early developing (the first stage of entrainment in the reproductive cycle), late developing (stages needed to complete maturational competence), spawning, regressing (spawning season termination), and regenerating (fish that are mature but outside of the spawning season). A method to assess the certainty of maturity assignment based on reproductive phase and the age and size range sampled is presented, as are best practices to estimate size and age at maturity. To remove the subjectivity from current methods to estimate spawning seasonality, we present a new quantitative method to identify the core spawning season and peak spawning months.

Conclusion

A species’ ability to adapt to fishing and climate change varies with their reproductive strategy. Improving our understanding of fish reproduction necessitates standardizing methodology and terminology.

Abstract Image

了解鱼类种群生产力不可或缺的生殖特征统一框架和术语
本文强调了海洋鱼类产卵-生殖系统的复杂性,以及不同物种和生态系统之间的差异,同时提供了评估鱼类生殖的通用术语和框架。我们强调性腺发育对评估成熟度、繁殖力、产卵地点和时间以及原雌性物种的过渡和性别分配非常重要。 方法 我们回顾并比较了暖水鱼类和冷水鱼类的生殖特征。定义了雌雄鱼类和原雌鱼类的生殖阶段,并展示了组织学显微照片。我们还开发了新的方法来评估成熟度、产卵季节性、产卵高峰以及原雌性物种的性别分配。 结果 与冷水系统相比,原雌性、产卵季节延长和繁殖力不确定在暖水系统中更为常见。以下生殖阶段被定义为未成熟期、过渡时期(变性)、早期发育期(生殖周期的第一阶段)、晚期发育期(完成成熟能力所需的阶段)、产卵期、退行期(产卵期终止)和再生期(鱼类成熟但不在产卵期)。本报告介绍了一种根据繁殖阶段、采样年龄和大小范围评估成熟度确定性的方法,以及估计成熟时大小和年龄的最佳做法。为了消除目前估计产卵季节性方法的主观性,我们提出了一种新的定量方法来确定核心产卵季节和产卵高峰月份。 结论 鱼类适应渔业和气候变化的能力因其繁殖策略而异。要加深我们对鱼类繁殖的了解,就必须实现方法和术语的标准化。
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来源期刊
Marine and Coastal Fisheries
Marine and Coastal Fisheries FISHERIES-MARINE & FRESHWATER BIOLOGY
CiteScore
3.40
自引率
5.90%
发文量
40
审稿时长
>12 weeks
期刊介绍: Marine and Coastal Fisheries: Dynamics, Management, and Ecosystem Science publishes original and innovative research that synthesizes information on biological organization across spatial and temporal scales to promote ecologically sound fisheries science and management. This open-access, online journal published by the American Fisheries Society provides an international venue for studies of marine, coastal, and estuarine fisheries, with emphasis on species'' performance and responses to perturbations in their environment, and promotes the development of ecosystem-based fisheries science and management.
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