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Population Dynamics of Bigeye Grunt, Brachydeuterus auritus (Valenciennes, 1831) in Ghana and Management Implications

机译:加纳大眼鲷(Brachydeuterus auritus,Valenciennes,1831)在加纳的种群动态及其管理意义

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Population dynamics of Brachydeuterus auritus harvested from Ghana’s coastal waters was assessed followingprevious indications that this important species is collapsing. In view of this, a total of 849 samples of B. auritus werecollected from February 2016 to January 2017, measured for total lengths and examined using FiSAT II. The meanlength was 13.7 cm with a growth pattern of 2.8. The asymptotic length (L∞) and growth rate (K) were 21.53 cm and0.67 yr-1 respectively portraying that this species is a fast-growing species. The lengths at first maturity and capturewere calculated as 14.4 cm and 6.02 cm respectively which indicated the presence of growth overfishing. The criticallength at capture (Lc=0.28) was lower than 0.5, supporting the earlier assertion that the investigated fish species isplagued with growth overfishing. Natural mortality rate (M=1.44/yr) was higher than fishing mortality rate (F=1.22/yr)an indication that small sized fished fishes were largely harvested. The recruitment layout was unremittingthroughout the year with two major peaks showing the presence of strong recruitment into the stock - a strategy toavert extinction of its species. However, the exploitation rate (E=0.46) was slightly lower than the Emax (0.52)showing that the biomass of the investigated stock could surpass the maximum sustainable yield (Emax) if necessaryfishery management options are not put in place. Furthermore, using the Quadrant rule, the investigated stock wascategorized as developing, hence any unsustainable increase in fishing efforts could facilitate growth overfishingleading to its collapse. Therefore, to ensure sustainable exploitation and contribution to protein requirement forcoastal community households, relevant fisheries measures are advocated.
机译:根据先前迹象表明该重要物种正在崩溃,评估了从加纳沿海水域收获的短吻鲈的种群动态。有鉴于此,从2016年2月至2017年1月,共收集了849个金黄色葡萄球菌样品,测量了总长度并使用FiSAT II进行了检查。平均长度为13.7厘米,生长模式为2.8。渐近长度(L∞)和生长速率(K)分别为21.53 cm和0.67 yr-1,说明该物种是快速生长的物种。第一次成熟和捕获的长度分别计算为14.4 cm和6.02 cm,这表明存在过度捕捞的情况。捕获时的临界长度(Lc = 0.28)小于0.5,这支持了先前的断言,即所研究的鱼类被过度捕捞所困扰。自然死亡率(M = 1.44 /年)高于捕捞死亡率(F = 1.22 /年),这表明小型鱼被大量捕捞。全年的招募布局一直不懈,有两个主要高峰表明该种群存在强大的招募活动,这是一种避免物种灭绝的策略。然而,开发率(E = 0.46)略低于Emax(0.52),表明如果没有采取必要的渔业管理措施,被调查种群的生物量可能会超过最大可持续产量(Emax)。此外,使用象限规则,将被调查种群归类为发展中,因此,任何不可持续的捕捞努力增加都可能促进过度捕捞导致其倒闭。因此,为确保可持续开发和对沿海社区家庭蛋白质需求的贡献,提倡采取相关的渔业措施。

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