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Gizzard shad population dynamics in eutrophic Missouri reservoirs with emphasis on environmental influences on their growth

机译:富营养化密苏里州水库的izz种群动态,重点是环境对其生长的影响

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Gizzard shad (Dorosoma cepedianum ) is an ecologically important species in many waters of the USA. Their versatile feeding and nutrient-recycling capabilities and importance as prey, combined with their commonly high biomasses, result in widespread ecosystem effects. Despite their importance, few studies have focused on variables that influence their population dynamics, especially in mid-latitude waters. The objectives of this study were to: (1) describe population dynamics including size and age structure, growth, and mortality and (2) determine potential environmental influences on annual variations in growth increments of gizzard shad. Gizzard shad populations were sampled annually in three eutrophic reservoirs in Missouri, over a successive 5-year period. Size and age structure were temporally variable owing to variable year-class strength and differing growth rates. Strong year-classes arose from age-0 cohorts that experienced relatively high overwinter survival. Annual variations in growth increments across all cohorts and reservoirs appeared to be affected by the initial length of fish at the beginning of the growing season and by food availability. Annual mortality estimates ranged from 0.38 to 0.70 for ages 3–7 among the reservoirs. Due to their dynamic nature, effects of these populations on their ecosystems also must be temporally variable and complex. Future studies should focus on the importance of these temporal effects on ecosystem dynamics.
机译:izz(Dorosoma cepedianum)是美国许多水域中的重要生态物种。它们具有广泛的进食和养分循环能力,并且作为猎物具有重要意义,再加上通常较高的生物量,导致了广泛的生态系统影响。尽管它们很重要,但很少有研究集中在影响其种群动态的变量上,特别是在中纬度水域。这项研究的目的是:(1)描述种群动态,包括大小和年龄结构,生长和死亡率,以及(2)确定对environmental的生长增量年变化的潜在环境影响。连续5年,每年在密苏里州的三个富营养化水库中采样sample的d鱼种群。由于年级强度的变化和增长率的不同,大小和年龄结构在时间上也有所变化。强大的年级课程源于0岁以上的人群,他们的相对越冬生存率较高。所有队列和水库的生长增量的年度变化似乎都受到生长期开始时鱼的初始长度和食物供应量的影响。在3-7岁的水库中,年死亡率估计在0.38至0.70之间。由于它们的动态性质,这些种群对其生态系统的影响也必须在时间上具有变化性和复杂性。未来的研究应集中于这些时间效应对生态系统动力学的重要性。

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