Temperature cycles beneath, and adjacent to, intertidal boulders and associated differences in biotic composition

IF 1.4 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY
Candice Jansen van Rensburg, A. Robbins, C. Griffiths
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引用次数: 1

Abstract

The only previous study on the macrobiota of South African boulder shores showed this assemblage to be more diverse than on nearby rocky platforms, but the drivers of that difference remain unresolved. We recorded water and air temperatures under intertidal boulders and on adjacent exposed rocky platforms, at both the upper- and lower-shore level, at Kommetjie, South Africa, over 2-week tidal cycles, repeating this during summer and winter. The macrobiota in each location was also sampled during diurnal low tides. The most-extreme temperatures, and greatest ranges, occurred during summer on upper-shore open rock (13.9–37.7 °C, range difference of 23.8 °C), while under upper-shore boulders the maximum temperature was lower at 28.9 °C and the range spanned only 15.5 °C. In winter, maximum temperatures and ranges were lower at all locations. Maximum temperatures did not coincide with spring tides, but occurred several days later, when low tides happened during the heat of the day. Closer analysis of daily fluctuations revealed influence of weather on temperatures attained and showed that durations of elevated temperatures were much shorter in the lower shore. The upper shore exhibited low biodiversity, supporting only 9 species, with 8 found only under boulders during diurnal low tide; the lower shore was more diverse, with 11 species on open rock and 29 under boulders. Biomass and abundance were also higher under boulders at both levels, especially on the upper shore. More-benign under-boulder conditions thus facilitate more abundant and diverse biota sheltering there than occurs on adjacent exposed rocks, particularly on the upper shore.
潮间带巨石下面和附近的温度循环以及生物组成的相关差异
此前唯一一项关于南非巨石海岸大型生物的研究表明,这种组合比附近的岩石平台更为多样,但这种差异的驱动因素仍未解决。我们在两周的潮汐周期内记录了南非Kommetjie潮间带巨石下和相邻裸露岩石平台上的水和空气温度,在夏季和冬季重复这种情况。每个地点的大型生物也在日低潮期间进行采样。夏季,最极端的温度和最大的范围出现在上游开阔岩石上(13.9–37.7°C,范围差23.8°C),而在上游巨石下,最高温度较低,为28.9°C,且范围仅为15.5°C。在冬季,所有地区的最高气温和最高气温范围都较低。最高温度与大潮并不一致,但发生在几天后,当时低潮发生在白天的高温时期。对每日波动的更仔细分析揭示了天气对温度的影响,并表明较低海岸的高温持续时间要短得多。上游生物多样性较低,仅支持9个物种,其中8个物种仅在日低潮时在巨石下发现;较低的海岸更加多样化,有11种在开阔的岩石上,29种在巨石下。在这两个层面上,巨石下的生物量和丰度也较高,尤其是在上海岸。因此,在巨石条件下更为温和的生物群比在邻近裸露的岩石上更为丰富多样,尤其是在上游海岸。
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来源期刊
African Journal of Marine Science
African Journal of Marine Science 生物-海洋与淡水生物学
CiteScore
2.60
自引率
16.70%
发文量
17
审稿时长
6-12 weeks
期刊介绍: The African (formerly South African) Journal of Marine Science provides an international forum for the publication of original scientific contributions or critical reviews, involving oceanic, shelf or estuarine waters, inclusive of oceanography, studies of organisms and their habitats, and aquaculture. Papers on the conservation and management of living resources, relevant social science and governance, or new techniques, are all welcomed, as are those that integrate different disciplines. Priority will be given to rigorous, question-driven research, rather than descriptive research. Contributions from African waters, including the Southern Ocean, are particularly encouraged, although not to the exclusion of those from elsewhere that have relevance to the African context. Submissions may take the form of a paper or a short communication. The journal aims to achieve a balanced representation of subject areas but also publishes proceedings of symposia in dedicated issues, as well as guest-edited suites on thematic topics in regular issues.
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