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首页> 外文期刊>Marine ecology progress series >Dynamics of white perch Morone americana population contingents in the Patuxent River estuary, Maryland, USA
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Dynamics of white perch Morone americana population contingents in the Patuxent River estuary, Maryland, USA

机译:美国马里兰州Patuxent河河口白鲈Morone americana种群的动态

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Alternative migratory pathways in the life histories of fishes can be difficult to assess but may have great importance to the dynamics of spatially structured populations. We used Sr/Ca in otoliths as a tracer of time spent in freshwater and brackish habitats to study the ontogenetic mov-ments of white perch Morone americana in the Patuxent River estuary. We observed that, soon after the larvae metamorphose, juveniles either move to brackish habitats (brackish contingent) or take up residency in tidal fresh water (freshwater contingent) for the first year of life. In one intensively studied cohort of juveniles, the mean age at which individuals moved into brackish environments was 45 d (post-hatch), corresponding to the metamorphosis of lavae to juveniles and settlement in littoral habitats. Back-calculated growth rates of the freshwater contingent at this same age (median = 0.6 mm d~(-1)) were significantly higher than the brackish contingent (median = 0.5 mm d~(-1)). Strong year-class variability ( > 100-fold) was evident from juvenile surveys and from the age composition of adults sampled during spawning. Adult samples were dominated by the brackish contingent (93 % of n = 363), which exhibited a significantly higher growth rate (von Bertalanffy, k = 0.67 yr~(-1)) than the freshwater contingent (k = 0.39 yr~(-1)). Combined with evidence that the relative freguency of the brackish contingent has increased in year-classes with high juvenile recruitment, these results implicate brackish environments as being important for maintaining abundance and productivity of the population. By comparison, disproportionately greater recruitment to the adult population by the freshwater contingent during years of low juvenile abundance suggested that freshwater habitats sustain a small but crucial reproductive segment of the population. Thus, both contingents appeared to have unigue and complementary roles in the population dynamics of white perch.
机译:鱼类生活史中的其他迁徙途径可能难以评估,但可能对空间结构种群的动态非常重要。我们使用耳石中的Sr / Ca作为在淡水和咸淡生境中所花费时间的示踪剂,以研究Patuxent河口白色鲈鱼Morone americana的自生运动。我们观察到,在幼虫蜕变后不久,幼虫要么移居到半咸淡的栖息地(微咸的特遣队),要么在生命的第一年居住在潮汐淡水中(淡水的偶然性)。在一个经过深入研究的队列中,个体进入微咸环境的平均年龄为45 d(孵化后),这对应于熔岩向少年的变态以及在沿海栖息地的沉降。在相同年龄(中位数= 0.6 mm d〜(-1))的淡水特遣队的反算生长速率显着高于咸淡特遣队(中位数= 0.5 mm d〜(-1))。从青少年调查和产卵期间采样的成年年龄组成可以明显看出年级变异性强(> 100倍)。成年样品被微咸的特遣队(n = 363的93%)所控制,其生长速率(von Bertalanffy,k = 0.67 yr〜(-1))明显高于淡水特遣队(k = 0.39 yr〜(- 1))。结合有证据表明,在青少年高招募的年级中,咸咸队伍的相对频率增加了,这些结果表明淡咸环境对于维持人口的丰度和生产力很重要。相比之下,在少年数量少的年份中,淡水分遣队对成年人口的招募成比例增加,这表明淡水生境维持了人口的一小部分但至关重要的生殖部分。因此,两个特遣队在白鲈种群动态中似乎具有唯一性和互补性。

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