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误入歧途:海洋酸化使幼鱼对不相关的环境线索产生吸引力。

On the wrong track: ocean acidification attracts larval fish to irrelevant environmental cues.

机构信息

Southern Seas Ecology Laboratories, School of Biological Sciences and The Environment Institute, DX 650 418, The University of Adelaide, Adelaide, SA 5005, Australia.

出版信息

Sci Rep. 2018 Apr 11;8(1):5840. doi: 10.1038/s41598-018-24026-6.

Abstract

Population replenishment of marine life largely depends on successful dispersal of larvae to suitable adult habitat. Ocean acidification alters behavioural responses to physical and chemical cues in marine animals, including the maladaptive deterrence of settlement-stage larval fish to odours of preferred habitat and attraction to odours of non-preferred habitat. However, sensory compensation may allow fish to use alternative settlement cues such as sound. We show that future ocean acidification reverses the attraction of larval fish (barramundi) to their preferred settlement sounds (tropical estuarine mangroves). Instead, acidification instigates an attraction to unfamiliar sounds (temperate rocky reefs) as well as artificially generated sounds (white noise), both of which were ignored by fish living in current day conditions. This finding suggests that by the end of the century, following a business as usual CO emission scenario, these animals might avoid functional environmental cues and become attracted to cues that provide no adaptive advantage or are potentially deleterious. This maladaptation could disrupt population replenishment of this and other economically important species if animals fail to adapt to elevated CO conditions.

摘要

海洋生物的种群补充在很大程度上取决于幼虫成功扩散到适宜的成体栖息地。海洋酸化改变了海洋动物对物理和化学线索的行为反应,包括定居阶段幼鱼对其偏好栖息地气味的适应性回避和对非偏好栖息地气味的吸引力。然而,感觉补偿可能使鱼类能够利用其他定居线索,如声音。我们表明,未来的海洋酸化会逆转幼鱼(巴沙鱼)对其偏好的定居声音(热带河口红树林)的吸引力。相反,酸化会引起对不熟悉声音(温带岩石礁)和人为产生的声音(白噪声)的吸引力,而在当前条件下生活的鱼类会忽略这些声音。这一发现表明,按照目前的 CO 排放情景,到本世纪末,这些动物可能会避开功能性环境线索,而被那些没有适应性优势或可能有害的线索所吸引。如果动物不能适应升高的 CO 水平,这种不适应可能会破坏这种和其他具有经济重要性的物种的种群补充。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3dd/5895586/9e594185b22e/41598_2018_24026_Fig1_HTML.jpg

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