耳石增量和元素:评估最近发现的天气泥鳅种群

IF 1.1 Q3 FISHERIES
Brendan R. Amman, Wesley L. Gerrin, Sarah F. McNair, Peter D. Hazelton, James L. Shelton, Brian M. Shamblin, Martin J. Hamel
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引用次数: 0

摘要

水生非本地物种引入新生态系统可能对本地生物多样性产生负面影响。引进物种可以先于本地物种,竞争资源,传播疾病,杂交和破坏栖息地。为了尽量减少对水生生物群的影响,管理工作需要减少入侵物种的丰度。然而,根除或减少工作需要有关引进来源和生物体的生物学和生态学的信息。因此,本研究的目的是量化最近在美国佐治亚州水域发现的天气泥鳅(Misgurnus anguillicaudatus)的种群动态、出生起源和扩散特征。提取矢状耳石并对其进行老化以确定动态速率函数,并对其中一部分耳石进行微化学分析以量化扩散和引入事件。天气泥鳅样本的年龄和长度范围很广,表明自然繁殖和招募已经发生了多年。在一些鱼身上观察到的耳石微化学变化表明,它们已经从引入或繁殖地点分散到不同的地区,而另一些鱼可能自孵化以来一直留在同一个系统中。总的来说,我们的研究结果表明,乔治亚州的天气泥鳅种群是不连贯的,可能是由于多次引入造成的。这些结果将用于制定管理策略,并有助于继续和加强有关释放不需要的观赏鱼的宣传。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Otolith Increments and Elements: Assessing a Recently Discovered Population of Weather Loach

Otolith Increments and Elements: Assessing a Recently Discovered Population of Weather Loach

The introduction of aquatic non-native species into novel systems may have negative impacts on native biodiversity. Introduced species can predate native species, compete for resources, transmit diseases, hybridise and degrade habitat. To minimise impacts on aquatic biota, management efforts are needed to reduce invasive species abundance. However, eradication or reduction efforts require information about the source of introductions and the biology and ecology of the organism. Therefore, the objective of this study was to quantify population dynamics, natal origins and dispersal characteristics of the introduced Weather Loach Misgurnus anguillicaudatus, which was recently discovered in Georgia, USA waters. Sagittal otoliths were extracted and aged to determine dynamic rate functions, and we performed microchemical analysis on a subset of otoliths to quantify dispersal and introduction events. Sampled Weather Loach consisted of a wide range of ages and lengths, indicating that natural reproduction and recruitment have been occurring for multiple years. The change in otolith microchemistry seen in some fish reveals that they have dispersed from their introduction or reproduction sites into different areas, while others have likely remained in the same system since hatching. Overall, our findings indicate that the Weather Loach populations in Georgia are disjunct, likely stemming from multiple introductions. These results will be used to develop management strategies as well as aid in the effort to continue and enhance outreach regarding the release of unwanted aquarium fish.

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