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养殖幼鱼在尾水中的年龄和生长:环境变化和每日年龄估计的准确性。

Age and growth of stocked juvenile Shoal Bass in a tailwater: Environmental variation and accuracy of daily age estimates.

机构信息

U.S. Geological Survey, Oklahoma Cooperative Fish and Wildlife Research Unit, Department of Natural Resource Ecology and Management, Oklahoma State University, Stillwater, Oklahoma, United States of America.

Department of Natural Resource Ecology and Management, Oklahoma State University, Stillwater, Oklahoma, United States of America.

出版信息

PLoS One. 2019 Oct 23;14(10):e0224018. doi: 10.1371/journal.pone.0224018. eCollection 2019.

Abstract

Otolith microanalysis is often used to assess population age structure and growth of fishes during their early stages. Shoal Bass Micropterus cataractae is a recently described species of conservation concern and little is known regarding factors affecting their recruitment. In 2004, Georgia Department of Natural Resources (GADNR) and the US National Park Service (NPS) stocked Shoal Bass marked with oxytetracycline (OTC) in the Chattahoochee River near Atlanta, Georgia in an effort to restore this population, creating known-age fish to examine the effect of environment on daily age accuracy. We obtained samples of stocked juvenile (<150 mm) Shoal Bass from standard monitoring that occurred approximately 30-60 days after stocking in the Chattahoochee River to 1) validate daily rings for estimating age, hatch dates, and growth rates for stocked age-0 Shoal Bass, and 2) evaluate the effect of habitat (location) on age bias. Shoal Bass otoliths were examined for OTC marks and daily rings were counted in reference to OTC marks to assess age estimation accuracy. Age estimation accuracy ranged from -2 to -25 days and was influenced by the environment where Shoal Bass were captured, with greater inaccuracy in colder water temperatures. Fish collected from locations with colder temperatures displayed closer spacing of daily rings, potentially leading to greater underestimation of age. Growth rates of stocked Shoal Bass, corrected for age estimation error, ranged from 0.5 mm/day to 0.8 mm/day. This study demonstrates the effect of environmental variability on age inaccuracy and subsequent interpretation of results. Incorporating methods to assess age estimation accuracy is needed to understand interspecific differences in recruitment among black bass species in the variety of natural and human-modified environments they inhabit.

摘要

耳石微分析常用于评估鱼类早期的群体年龄结构和生长情况。鲈形目鮈属的巴氏鲈 Micropterus cataractae 是一种新近被描述的保护物种,关于影响其补充量的因素知之甚少。2004 年,佐治亚州自然资源部(GADNR)和美国国家公园管理局(NPS)在佐治亚州亚特兰大附近的查特胡奇河投放了带有土霉素(OTC)标记的巴氏鲈,以努力恢复该种群,制作已知年龄的鱼类样本以研究环境对每日年龄精度的影响。我们从标准监测中获得了投放的幼鱼(<150mm)巴氏鲈样本,这些样本是在查特胡奇河投放后约 30-60 天采集的,目的是:1)验证用于估计年龄、孵化日期和生长率的每日轮纹,以及 2)评估栖息地(位置)对年龄偏差的影响。巴氏鲈的耳石被检查是否有 OTC 标记,并且根据 OTC 标记来计算每日轮纹,以评估年龄估计的准确性。年龄估计的准确性范围为-2 至-25 天,受巴氏鲈被捕捞环境的影响,水温越低则误差越大。在水温较低的地点采集的鱼类,其每日轮纹之间的间隔更近,可能导致年龄被低估。经年龄估计误差修正后的投放巴氏鲈的生长率范围为 0.5mm/天至 0.8mm/天。本研究表明了环境变异性对年龄不准确性的影响,以及对结果的后续解释。需要采用评估年龄估计准确性的方法,以便了解黑鲈属鱼类在其栖息的各种自然和人为改造环境中的补充量的种间差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50a1/6808449/e11bc679eb03/pone.0224018.g001.jpg

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