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Does geology matter? The effects of substratum and substrate properties on temperate rocky intertidal communities.

机译:地质重要吗?基质和基质性质对温带岩石潮间带群落的影响。

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摘要

Rock substrates and their properties are key components of the physical environment for many marine benthic communities. Each rock represents a unique geologic origin and time. The organisms inhabiting them also have their own histories and different organisms arrived on the evolutionary scene at different times. Thus, organisms have been interacting for different periods of time on substrates and their ecology is couched in this geologic context. Ecological research rarely includes this historical perspective, even through proxies (Chapter 1). In the rocky intertidal, the role of substratum in community ecology is surprisingly understudied for communities that have been hotbeds for conceptual advances in ecology. Using methods in field ecology, geomorphology, and petrology, I determined if: (1) substrate type affects community structure, diversity, and spatial and temporal variation in the rocky intertidal, (2) surface complexity is an important substrate feature for intertidal organisms, (3) mineralogy affects species or community structure, (4) substrates and their properties elicit differential responses by intertidal species.;On a local scale (Chapter 2), a sedimentary island comprised of distinct sandstone units presented a broad range of surface complexity to intertidal organisms. Body size of the dominant territorial limpet Lottia gigantea was substrate-driven, which can greatly impact this organism's sex ratio as well as algal communities and space competitors in the rocky intertidal. On a regional scale (Chapter 3), multiple rock types that were monitored exhibited differences in community structure, diversity, and biomass. These effects were small and driven by a small proportion of species. Surface complexity was not the primary factor in structuring communities and other properties such as mineral composition and susceptibility to erosion were also important. Natural and artificial substrates supported distinct communities. Variation in limpet body size and abundance was affected by substratum, but recruitment was not (Chapter 4). These relationships partly explained spatial and temporal variation in the intertidal. Results from these studies demonstrate the importance of substratum and can be incorporated into coastal conservation. This is especially important in the face of global climate change since intertidal communities will be subject to changing geologic settings.
机译:岩石基质及其性质是许多海洋底栖生物群落物理环境的关键组成部分。每块岩石代表一个独特的地质起源和时间。居住在它们之间的生物也有自己的历史,不同的生物在不同的时间到达了进化的舞台。因此,生物体在基质上相互作用的时间不同,并且它们的生态学在这种地质背景下处于稳定状态。生态研究很少包括这种历史观点,即使是通过代理也是如此(第一章)。在潮间带岩石中,对于那些已经成为生态学概念发展的温床的社区而言,令人惊讶地研究了底层在社区生态中的作用。利用野外生态学,地貌学和岩石学的方法,我确定了:(1)基质类型是否影响岩石潮间带的群落结构,多样性以及时空变化;(2)表面复杂性是潮间带生物的重要基质特征, (3)矿物学影响物种或群落结构,(4)基质及其性质引起潮间带物种的差异响应。;在局部尺度(第2章),由不同砂岩单元组成的沉积岛呈现出广泛的地表复杂性潮间带生物。占主导地位的领羽Lottia gigantea的体型是受基质驱动的,这可能极大地影响该生物体的性别比以及岩石潮间带的藻类群落和太空竞争者。在区域范围内(第3章),受监测的多种岩石类型在群落结构,多样性和生物量方面表现出差异。这些影响很小,并且受一小部分物种的驱动。表面的复杂性不是构成群落结构的主要因素,其他属性(例如矿物成分和易蚀性)也很重要。天然和人工基质支持不同的社区。的体型和丰度变化受基质的影响,但募集不受影响(第4章)。这些关系部分解释了潮间带的时空变化。这些研究的结果证明了地下层的重要性,可以纳入沿海保护。面对全球气候变化,这一点尤为重要,因为潮间带社区将面临不断变化的地质环境。

著录项

  • 作者

    Perotti, Elizabeth Anne.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Biology Ecology.;Biology Oceanography.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 177 p.
  • 总页数 177
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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