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首页> 外文期刊>Environmental Biology of Fishes >The microhabitat distribution of the Arkansas River shiner, Notropisgirardi: a habitat-mosaic approach
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The microhabitat distribution of the Arkansas River shiner, Notropisgirardi: a habitat-mosaic approach

机译:阿肯色河河道微生境分布,Notropisgirardi:一种生境-马赛克方法

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摘要

I evaluated the microhabitat distribution of the Arkansas River shiner, Notropis girardi, a candidate species for protection under the Endangered Species Act over a two-year period. Seasonal microhabitat samples were taken at three localities along the South Canadian River in central Oklahoma. The microhabitats sampled were defined subjectively based on structural and substrate characteristics: adjacent to stream banks, underwater sand ridges, or exposed sand islands, and within stream pools, midchannels, or backwaters. At each microhabitat, the following physicochemical measurements were made: depth, temperature, current speed, dissolved oxygen, conductivity, and pH. Notropis girardi used many microhabitats and the patterns varied seasonally and ontogenetically. Contingency tests indicated that bank, island, and sandridge habitats had significantly more N. girardi than the others (p < 0.01), whereas midchannel habitats were used significantly less often than other habitat types. A greater number of individuals were found in microhabitats defined by depths of 0-50 cm and current speeds of 0-50 cm s(-1) although faster current speeds were used with high frequency. Selection of deeper water was only apparent during the summer. Juveniles selected shallow, slow flowing backwater habitat types more frequently than did adults. Habitats adjacent to underwater sand ridges were important to both adults and juveniles, but similar types such as islands and banks also were used. No single physicochemical feature was linked to high densities of this species. During its life cycle, N. girardi used most of the range of features encountered in the S. Canadian River; thus, maintenance of the riverine landscape (i.e. all of the attributes of rivers in the native range of N. girardi) will be necessary to ensure that this species has access to appropriate habitat types throughout its life cycle. [References: 41]
机译:我评估了阿肯色河沿岸发光动物Notropis girardi的微生境分布,该物种在两年内受到《濒危物种法》的保护。在俄克拉荷马州中部的南加拿大河沿岸的三个地方采集了季节性微生境样品。根据结构和基质特征对采样的微生境进行主观定义:与溪岸,水下沙脊或裸露的沙岛相邻,并位于溪流池,中游河道或死水内。在每个微生境中,进行以下物理化学测量:深度,温度,电流速度,溶解氧,电导率和pH。 Notropis girardi使用了许多微生境,其模式随季节和个体发生而变化。应急测试表明,河岸,岛屿和沙丘生境比其他生境具有更大的吉拉第猪笼草(p <0.01),而河道中生境的使用频率明显低于其他生境类型。尽管在高频下使用更快的电流速度,但在由0-50 cm的深度和0-50 cm s(-1)的电流速度定义的微生境中发现了更多的个体。仅在夏季才选择深水。少年人选择浅水,缓慢流动的回水生境类型要比成年人更为频繁。水下沙脊附近的栖息地对成年人和少年都很重要,但是也使用了类似的类型,例如岛屿和河岸。没有单一的物理化学特征与该物种的高密度有关。在其生命周期中,吉拉迪猪笼草利用了加拿大南部河中遇到的大部分特征。因此,维持河流景观(即吉拉迪猪笼草原生地带的河流的所有属性)对于确保该物种在其整个生命周期中都能获得适当的生境类型是必不可少的。 [参考:41]

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