坦桑尼亚Tanga海岸捕获的Stolephorus commersonnii (lacep,1803)(长尾鱼目)的年龄、生长和死亡率

A. T. Kamukuru, S. Mahongo, B. Sekadende, J. Sululu
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引用次数: 1

摘要

基于2016年8月至2017年8月收集的月度长度-频率数据,对Tanga地区北部沿海环网渔场中商业黑尾蛾(Stolephorus comsonnii, Lacepede, 1803)的种群动态进行了评估。总体长(TL)为22 ~ 130 mm,总重(TW)为0.39 ~ 14.64 g。长权关系模型为W = 0.00001 x L2.886,呈现负异速生长模式。使用FiSAT II软件包中的ELEFAN I计算von Bertalanffy生长函数为Lt = 86.03 x (1 - e-1.19 (t -(- 0.01)))。生长性能指数和寿命分别为(h) = 3.9和Tmax = 2.5。总死亡率(Z)、捕捞死亡率(F)和自然死亡率(M)分别为1.39、0.53和0.86年-1。目前的开采率(Ecur)估计为0.38。大鼠全年均有繁殖,3月和6、7月有两个繁殖高峰。首次捕获长度(Lc50)和首次性成熟长度(Lm50)分别为40.51和57.35 mm TL,表明生长过度捕捞。凤尾鱼的存量表明存在过度捕捞的情况,需要采取管理干预措施,如减少捕捞努力水平、增加渔网尺寸和在产卵高峰期实行季节性封捕。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Age, growth and mortality of the anchovy Stolephorus commersonnii (Lacepède,1803) (Clupeiformes) caught off the coast of Tanga, Tanzania
The population dynamics of Stolephorus commersonnii (Lacepede, 1803) from a ringnet fishery operating off the northern coast of Tanga Region were evaluated based on monthly length-frequency data collected from August 2016 to August 2017. The total length (TL) and total weight (TW) of 14,410 individuals ranged from 22 to 130 mm and from 0.39 to 14.64 g respectively. S. commersonnii exhibited a negative allometric growth pattern with the length-weight relationship model: W = 0.00001 x L2.886. The von Bertalanffy growth function was Lt = 86.03 x (1 – e–1.19(t – (–0.01))) using ELEFAN I from the FiSAT II software tool package. Growth performance index and longevity were estimated at (ɸ) = 3.9 and Tmax = 2.5 yrs, respectively. The total (Z), fishing (F) and natural (M) mortalities were determined at 1.39, 0.53 and 0.86 yr-1, respectively. The current exploitation rate (Ecur) was estimated at 0.38. S. commersonnii exhibited a year-round breeding pattern, with two recruitment peaks in March and June/July. Length-at-first-capture (Lc50) and length-at-first-sexual maturity (Lm50) were 40.51 and 57.35 mm TL, respectively, suggesting growth overfishing. The stock of anchovy indicates an overfishing scenario requiring management intervention such as reducing fishing effort levels, increasing mesh sizes and introducing seasonal closures during peak spawning periods.
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