首页> 外文会议>Symposium on Effects of Fishing Activities on Benthic Habitats--Linking Geology, Biology, Socioeconomics, and Management >Biological Traits of the North Sea Benthos: Does Fishing Affect Benthic Ecosystem Function?
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Biological Traits of the North Sea Benthos: Does Fishing Affect Benthic Ecosystem Function?

机译:北海Benthos的生物特征:捕鱼是否会影响底栖生态系统功能?

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The impact of fishing on benthic species and habitats has been well documented, but effects on the way the ecosystem functions are less well understood. The roles performed by benthic species contribute to ecological functioning, and changes in the types of species present may have implications for the whole ecosystem. Biological traits analysis, which uses a wide range of biological characteristics, is employed to investigate the effects of fishing on the variety of roles performed by benthic taxa.Eighteen biological traits were chosen to represent aspects of the morphology, life history, feeding, and habitat use of benthic infauna from the western North Sea. Differences in relative frequency of the traits were assessed in relation to changes in fishing pressure over a 30-year period. The communities were dominated by organisms exhibiting opportunistic traits. These traits responded positively to an initial increase in fishing effort and then remained relatively stable for the remainder of the study. Traits predicted to be associated with vulnerability to fishing impacts, such as long life spans, large oocytes, and shelled body designs, decreased in proportion in response to elevated fishing effort. Those organisms with high regeneration potential and asexual reproduction also responded negatively. Traits related to feeding modes of various taxa and their interactions with the benthic habitat remained relatively stable throughout the study. We conclude that fishing has altered the biological trait composition of this benthic community in both predictable and unexpected ways over the last 3 decades. Some aspects of functioning may have been affected, while others, including those related to trophic relationships and habitat usage, have been preserved in spite of changes in taxon composition. It is not yet clear what the larger-scale implications of these trait changes may be to ecosystem functioning, fisheries management, or, indeed, the management of anthropogenic activities in the sea. Whatis clear is that studies of the biological trait compositions of other marine ecosystem components are now required.
机译:捕捞对底栖物种和栖息地的影响得到了很好的记录,但对生态系统功能不太了解的影响。底栖物种表现的角色有助于生态功能,并且存在的物种类型的变化可能对整个生态系统产生影响。使用广泛的生物学特性的生物学性状分析,用于探讨捕捞对底栖分类群表现的各种作用的影响。选择生物性状的各种作用,以代表形态,生命历史,喂养和栖息地的方面北海西北部的宾列尼奇infauna使用。根据30年期间,评估了特性相对频率的差异。社区主要由表现出机会性状的生物体。这些特征对捕捞努力的初始增加来响应积极响应,然后对研究其余部分保持相对稳定。预测与攻击影响的脆弱性有关的特质,例如长寿命,大型卵母细胞和壳体设计,响应捕捞努力的升高而比例下降。那些具有高再生潜力和无性繁殖的生物也会产生负面影响。与各种分类群的喂养模式相关的特质及其与底栖栖息地的相互作用仍然相对稳定。我们得出结论,捕捞在过去3年中,捕捞在过去3世纪的可预测和意想不到的方式都改变了这种底蕴的社区的生物特质构成。尽管分类组成的变化,一些功能的运作的一些方面可能受到影响,而其他方面则包括与营养关系和栖息地使用情况的人。目前尚不清楚这些特征变化的大规模影响可能是生态系统运作,渔业管理,或者,确实是海上人为活动的管理。似乎清楚的是,现在需要研究其他海洋生态系统组件的生物特征组合物。

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