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人类活动会影响海洋中幼鱼的生存和定向能力吗?

Do human activities influence survival and orientation abilities of larval fishes in the ocean?

作者信息

Siebeck Ulrike E, O'Connor Jack, Braun Christoph, Leis Jeffrey M

机构信息

School of Biomedical Sciences, The University of Queensland, Brisbane, Australia.

出版信息

Integr Zool. 2015 Jan;10(1):65-82. doi: 10.1111/1749-4877.12096.

Abstract

The larval stages of most marine fishes spend days to weeks in the pelagic environment, where they must find food and avoid predators in order to survive. Some fish only spend part of their life history in the pelagic environment before returning to their adult habitat, for example, a coral reef. The sensory systems of larval fish develop rapidly during the first few days of their lives, and here we concentrate on the various sensory cues the fish have available to them for survival in the pelagic environment. We focus on the larvae of reef fishes because most is known about them. We also review the major threats caused by human activities that have been identified to have worldwide impact and evaluate how these threats may impact larval-fish survival and orientation abilities. Many human activities negatively affect larval-fish sensory systems or the cues the fish need to detect. Ultimately, this could lead to decreased numbers of larvae surviving to settlement, and, therefore, to decreased abundance of adult fishes. Although we focus on species wherein the larvae and adults occupy different habitats (pelagic and demersal, respectively), it is important to acknowledge that the potential anthropogenic effects we identify may also apply to larvae of species like tuna and herring, where both larvae and adults are pelagic.

摘要

大多数海洋鱼类的幼体阶段会在远洋环境中度过数天至数周的时间,在那里它们必须寻找食物并躲避捕食者以求生存。一些鱼类在回到其成体栖息地(例如珊瑚礁)之前,仅在远洋环境中度过其生命史的一部分。幼体鱼类的感觉系统在其生命的最初几天内迅速发育,在此我们专注于鱼类在远洋环境中生存可利用的各种感觉线索。我们聚焦于珊瑚礁鱼类的幼体,因为我们对它们了解最多。我们还回顾了已被确定具有全球影响的人类活动所造成的主要威胁,并评估这些威胁可能如何影响幼体鱼类的生存和定向能力。许多人类活动会对幼体鱼类的感觉系统或鱼类需要检测的线索产生负面影响。最终,这可能导致存活至定居阶段的幼体数量减少,进而导致成体鱼类数量减少。尽管我们专注于幼体和成体占据不同栖息地(分别为远洋和底栖)的物种,但必须认识到,我们所确定的潜在人为影响也可能适用于金枪鱼和鲱鱼等物种的幼体,这些物种的幼体和成体均为远洋性。

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