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Microdistribution and colonization of Simulium vittatum (Diptera: Simuliidae) larvae on natural and artificial substrates.

机译:天然和人工底物上的Sim虫幼虫的微分布和定殖。

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摘要

I conducted a field study of natural substrates (cobbles) in two streams to examine microhabitat selection by larvae through correlations of black fly Simulium vittatum Zetterstedt (Diptera: Simuliidae) density with measured abiotic quantities. Flow variables (Froude number) best explained larval densities whereas combined substrate surface qualities (evenness, amount of periphyton) were of secondary importance. Positive correlations were found between simuliid densities and those of theory taxa, especially chironomids (Diptera), suggesting co-occurrence. Laboratory experiments examined larval black fly responses to specific substrate characteristics (evenness, texture, periphyton). At low density (2-4 larvae/cm$sp2$), larvae avoided smooth, even substrates. At high density (10+ larvae/cm$sp2$), there was no apparent selection, except in the presence of periphyton. A field colonization experiment demonstrated that black flies colonize new habitat (ceramic tiles) quickly (within 24 h). Numbers subsequently decline with time due to habitat degradation as periphyton and other materials accrue. (Abstract shortened by UMI.)Dept. of Biological Sciences. Paper copy at Leddy Library: Theses u26 Major Papers - Basement, West Bldg. / Call Number: Thesis1992 .B434. Source: Masters Abstracts International, Volume: 31-04, page: 1654. Thesis (M.Sc.)--University of Windsor (Canada), 1992.
机译:我对两条流中的天然底物(卵石)进行了实地研究,以通过黑蝇(Simulium v​​ittatum Zetterstedt)(双翅目:Simuliidae)的密度与测得的非生物量的相关性来检查幼虫对微生境的选择。流量变量(弗洛德数)最能解释幼虫的密度,而综合的基质表面质量(均匀度,周生植物的数量)则是次要的。发现类似物密度与理论类群的密度之间存在正相关关系,尤其是嵌合体(双翅目),提示共存。实验室实验检查了幼虫黑蝇对特定底物特征(均匀度,质地,附生植物)的反应。在低密度(2-4个幼虫/ cm 2 / sp2 $)下,幼虫避免了光滑,均匀的基质。在高密度(10+幼​​虫/ cm2 / sp2 $)下,除了存在附生植物外,没有明显的选择。野外定殖实验表明,黑蝇在24小时内迅速定居了新的栖息地(陶瓷砖)。由于周围植物和其他物质的积累,由于栖息地退化,数量随后随时间下降。 (摘要由UMI缩短。)生物科学学院。莱迪图书馆的纸质副本:论文主要论文-西楼地下室。 /电话号码:Thesis1992 .B434。资料来源:国际硕士摘要,第31-04卷,第1654页。论文(硕士)-温莎大学(加拿大),1992年。

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    Beckett Sherry Alison.;

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