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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Inferring movement patterns of a coral reef fish using oxygen and carbon isotopes in otolith carbonate
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Inferring movement patterns of a coral reef fish using oxygen and carbon isotopes in otolith carbonate

机译:利用耳石碳酸盐中的氧和碳同位素推断珊瑚鱼的运动方式

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摘要

Ratios of oxygen and carbon isotopes (δ~(18)O and δ~(13)C) in otolith carbonate provide information on stock separation and migration offish populations inhabiting isotopically different environments. δ~(18)O and δ~(13)C were analysed from Lethrinus miniatus (Forster 1801) otoliths to elucidate the probability of broad-scale movement in the Great Barrier Reef. Otolith core and edge portions were compared between and within individuals from the same cohort (n = 120) to determine whether isotopically different environments were inhabited by juveniles and adults from different latitudes. A comparison between individuals revealed that δ~(18)O and δ~(13)C increased with latitude and were generally higher in edge than in core portions. Similarly, within most individual otoliths, δ~(18)O and δ~(13)C were higher in edge than in core portions. For some individuals, however, there was no difference in δ~(18)O between core and edge portions, potentially signifying self-recruitment to the area or occupation of areas of similar chemistry. The majority of individuals from 19 to 22°S and almost half of individuals from 18°S displayed juvenile δ~(18)O signatures characteristic of a warmer environment, suggesting movement to cooler environments or potential southerly migration of early life stages to adult habitat. In contrast, almost half of adult individuals in the most northern latitude (18°S) appeared to originate from cooler environments, suggesting movement to warmer environments or potential northward migration with ontogeny. These results infer that movement of L. miniatus individuals occurred across different isotopic environments with life stage and was related to latitude. Isotope ratios provided insight into movement patterns of L. miniatus at scales that will be important for delineating management units for this commercially important species.
机译:耳石碳酸盐中氧碳同位素(δ〜(18)O和δ〜(13)C)的比值提供了有关居住在同位素不同环境中的鱼类种群种群分离和迁移的信息。分析了小Lethrinus miniatus(Forster 1801)耳石中的δ〜(18)O和δ〜(13)C,以阐明大堡礁中大规模运动的可能性。比较来自同一队列(n = 120)的个体之间和个体内部的耳石核心和边缘部分,以确定来自不同纬度的少年和成年人是否居住着同位素不同的环境。个体之间的比较显示,δ〜(18)O和δ〜(13)C随着纬度的增加而增加,并且边缘上通常比核心部分高。类似地,在大多数单个耳石中,边缘的δ〜(18)O和δ〜(13)C高于核心部分。但是,对于某些人来说,核心部分和边缘部分之间的δ〜(18)O没有差异,这可能意味着自我招募该地区或占领了类似化学物质的地区。 19至22°S的大多数人和18°S的几乎一半的人表现出少年δ〜(18)O的特征,表现为温暖的环境,这表明向较凉的环境迁移或早期生命阶段可能向南迁移到成年栖息地。相比之下,在最北纬(18°S)的成年个体中,几乎有一半似乎来自较凉的环境,这表明向较温暖的环境迁移或有个体发育的潜在北移。这些结果推断小豆荚个体的运动发生在不同的同位素环境中,并具有生命周期,并且与纬度有关。同位素比率提供了对小规模乳酸杆菌运动模式的洞察力,这对于确定具有重要商业意义的物种的管理单位将非常重要。

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    AIMS@JCU, James Cook University, Townsville, Queensland 4811, Australia,Australian Institute of Marine Science, PMB No 3, Townsville, 4810, Australia,Centre for Sustainable Tropical Fisheries and Aquaculture, School of Earth and Environmental Sciences, James Cook University, Townsville, Queensland 4811, Australia;

    Australian Institute of Marine Science, PMB No 3, Townsville, 4810, Australia,Centre for Sustainable Tropical Fisheries and Aquaculture, School of Earth and Environmental Sciences, James Cook University, Townsville, Queensland 4811, Australia;

    Centre for Sustainable Tropical Fisheries and Aquaculture, School of Earth and Environmental Sciences, James Cook University, Townsville, Queensland 4811, Australia;

    Centre for Sustainable Tropical Fisheries and Aquaculture, School of Earth and Environmental Sciences, James Cook University, Townsville, Queensland 4811, Australia,Oceanic Fisheries Programme, Secretariat of the Pacific Community, BP D5,98848 Noumea, New Caledonia;

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  • 正文语种 eng
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  • 关键词

    Broad-scale movement; Lethrinus miniatus; Migration; Ontogeny; Stable isotope chemistry;

    机译:大规模运动;微小的Lethrinus移民;个体发育稳定的同位素化学;

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