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卵石基质对水温环境的影响及其对湖拟鲤胚胎发育的意义(白鲑属)。

Modifying effects of a cobble substrate on thermal environments and implications for embryonic development in lake whitefish (Coregonus clupeaformis).

机构信息

Northern Ontario School of Medicine, Sudbury, Ontario, Canada.

Department of Biology, Laurentian University, Sudbury, Ontario, Canada.

出版信息

J Fish Biol. 2020 Jul;97(1):113-120. doi: 10.1111/jfb.14331. Epub 2020 Apr 13.

DOI:10.1111/jfb.14331
PMID:32222964
Abstract

A laboratory flume was constructed to examine substrate effects on aquatic development. The flume was designed as a once-through system with a submerged cobble-filled corebox. Lake whitefish (Coregonus clupeaformis) embryos and temperature probes were deployed at multiple sites within the cobble and in the open water channel. Embryos were incubated in the flume for two different experimental periods: one to examine substrate impacts during natural lake cooling (37 days: 5 December 2016 to 10 January 2017) and the second to investigate substrate effects while administering a twice weekly 1 h heat shock (51 days: 11 January to 2 March 2017). During incubation, no significant difference was found in the average temperature between locations; however, temperatures were more stable within the cobble. Following both incubation periods, embryos retrieved from the cobble were significantly smaller in both dry mass and body length by up to 20%. These results demonstrate differences between embryos submerged in a cobble substrate and in the open water column, highlighting the need to consider the physical influences from the incubation environment when assessing development effects as part of any scientific study or environmental assessment.

摘要

构建了一个实验室水槽来研究基质对水生发育的影响。该水槽设计为一次通过系统,具有浸没的卵石填充核心箱。湖白鲑(Coregonus clupeaformis)胚胎和温度探头被部署在卵石内和开阔水道的多个位置。胚胎在水槽中孵化了两个不同的实验期:一个是研究自然湖泊冷却期间基质的影响(37 天:2016 年 12 月 5 日至 2017 年 1 月 10 日),另一个是研究在每周两次 1 小时热冲击期间基质的影响(51 天:2017 年 1 月 11 日至 3 月 2 日)。在孵化期间,位置之间的平均温度没有显著差异;然而,卵石内的温度更稳定。在两个孵化期之后,从卵石中取出的胚胎在干质量和体长上都显著缩小了 20%。这些结果表明,浸没在卵石基质和开阔水柱中的胚胎之间存在差异,这突出表明,在进行任何科学研究或环境评估时,评估发育影响时需要考虑孵化环境的物理影响。

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