Effects of low light and high temperature on pediveligers of the fluted giant clam Tridacna squamosa

IF 0.9 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY Marine and Freshwater Behaviour and Physiology Pub Date : 2019-11-02 DOI:10.1080/10236244.2019.1700117
W. Eckman, K. Vicentuan, P. Todd
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引用次数: 3

Abstract

ABSTRACT This paper examines the responses of the fluted giant clam Tridacna squamosa pediveligers to elevated temperature and reduced light levels. In a light reduction experiment, a total of 104,000 T. squamosa pediveligers were exposed to four different levels of shading for approximately one month. The most heavily shaded treatment, at 0.4% of ambient light, had significantly lower survival than the other groups, which all received 1% or more of ambient light. In a second experiment, for approximately two weeks 13,000 T. squamosa pediveligers were divided among three treatments: one at ambient temperature averaging 29.5 °C, and two with elevated temperatures averaging 32.2 °C and 34.8 °C. The elevated temperature treatments resulted in near total mortality. The highest temperature survived by any pediveliger was 32.8 °C. Our results indicate a potential synergetic effect, with turbidity causing giant clam pediveligers to settle in shallower water―where they will likely be exposed to higher temperatures.
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弱光和高温对鳞砗磲幼体发育的影响
摘要本文研究了带槽大蛤(Tridacna squamosa pediveligers)对高温和弱光的响应。在一项光照减少实验中,将104,000只鳞状滴虫暴露在四种不同程度的遮光下约一个月。最严重的阴影处理(0.4%的环境光)的存活率明显低于其他组,其他组都接受1%或更多的环境光。在第二个实验中,在大约两周的时间里,将13000只角蚧虫分成三组:一组在平均29.5°C的环境温度下,两组在平均32.2°C和34.8°C的高温下。高温处理导致几乎全部死亡。任何弓形虫存活的最高温度是32.8°C。我们的研究结果表明了一种潜在的协同效应,浊度导致巨型蛤贝类在较浅的水域定居,在那里它们可能会暴露在更高的温度下。
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来源期刊
Marine and Freshwater Behaviour and Physiology
Marine and Freshwater Behaviour and Physiology 生物-海洋与淡水生物学
CiteScore
2.10
自引率
0.00%
发文量
9
审稿时长
>12 weeks
期刊介绍: Marine and Freshwater Behaviour and Physiology is devoted to the publication of papers covering field and laboratory research into all aspects of the behaviour and physiology of all marine and freshwater animals within the contexts of ecology, evolution and conservation. As the living resources of the world’s oceans, rivers and lakes are attracting increasing attention as food sources for humans and for their role in global ecology, the journal will also publish the results of research in the areas of fisheries biology and technology where the behaviour and physiology described have clear links to the contexts mentioned above. The journal will accept for publication Research Articles, Reviews, Rapid Communications and Technical Notes (see Instructions for authors for details). In addition, Editorials, Opinions and Book Reviews (invited and suggested) will also occasionally be published. Suggestions to the Editor-In-Chief for Special Issues are encouraged and will be considered on an ad hoc basis. With the goal of supporting early career researchers, the journal particularly invites submissions from graduate students and post-doctoral researchers. In addition to recognising the time constraints and logistical limitations their research often faces, and their particular need for a prompt review process, accepted articles by such researchers will be given prominence within the journal (see Instructions for authors for details).
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