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Annual secondary production of two estuarine mysid species (Mysidacea: Mysidae) inhabiting an intermittently closed estuary, south-eastern New Zealand

机译:居住在新西兰东南部间歇性封闭河口中的两种河口类蝇科鱼类(Mysidacea:Mysidae)的年度次级生产

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摘要

Estimates of secondary production are essential to understanding how communities function. Estimates of secondary production for key species such as mysids are scarce, especially in estuarine environments. There are no estimates for mysid production in intermittently closed estuaries in the world, and no estimates for endemic New Zealand mysids. The current study presents lengthmass models for two mysid species (Tenagomysis chiltoni Tattersall, 1923 and T. novae-zealandiae Thomson, 1900) from the south-eastern coast of the South Island, New Zealand. Kaikorai Lagoon, a small intermittently closed estuary, supported a large average annual biomass of T. novae-zealandiae (861.77 mg m ~2) and T. chiltoni (971.90 mg m ~2). The Hynes average-cohort method was used with lengthmass models to estimate the annual production of breeding populations of T. chiltoni and T. novae-zealandiae collected over a year in parts of the Kaikorai Lagoon. Compared with similar temperate ecosystems worldwide, the studied ecosystem indicated high annual production (11 328.8 mg m ~2 year ~1 and 6585.2 mg m ~2 year ~1) and turnover rates (P: B) (13.16 and 6.78) for T. novae-zealandiae and T. chiltoni, respectively. High annual secondary production may be due to relatively stable hydrological and food conditions found in intermittently closed estuaries, leading to dense stable populations that are maintained through much of the year.
机译:对次级生产的估算对于了解社区的功能至关重要。关键的物种(例如,象鼻类)的次级生产的估计很少,特别是在河口环境中。在世界上间歇性关闭的河口,没有关于类固醇杀虫剂的估计,也没有关于新西兰特有的类固醇杀虫剂的估计。目前的研究提出了来自新西兰南岛东南海岸的两种类蝇s(Tenagomysis chiltoni Tattersall,1923年和T. novae-zealandiae Thomson,1900年)的长度质量模型。 Kaikorai泻湖是一个间歇性封闭的小河口,支撑着T. novae-zealandiae(861.77 mg m〜2)和Chiltoni(971.90 mg m〜2)的较大平均年生物量。 Hynes平均队列方法与长度质量模型一起使用,以估计在一年多来的Kaikorai泻湖中收集的Chiltoni和T. novae-zealandiae繁殖种群的年产量。与全球类似的温带生态系统相比,研究的生态系统显示T的年产量高(11 328.8 mg m〜2年〜1和6585.2 mg m〜2年〜1)和周转率(P:B)(13.16和6.78)。 novae-zealandiae和T. chiltoni。每年二次产量较高可能是由于在间歇性封闭的河口中发现相对稳定的水文和粮食条件,导致人口稠密稳定的人口在一年中的大部分时间都保持着。

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