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固着生物群落中的密度依赖性、空间尺度与格局

Density dependence, spatial scale and patterning in sessile biota.

作者信息

Gascoigne Joanna C, Beadman Helen A, Saurel Camille, Kaiser Michel J

机构信息

School of Ocean Sciences, University of Wales Bangor Menai Bridge, Anglesey LL59 5AY, UK.

出版信息

Oecologia. 2005 Sep;145(3):371-81. doi: 10.1007/s00442-005-0137-x. Epub 2005 Sep 29.

Abstract

Sessile biota can compete with or facilitate each other, and the interaction of facilitation and competition at different spatial scales is key to developing spatial patchiness and patterning. We examined density and scale dependence in a patterned, soft sediment mussel bed. We followed mussel growth and density at two spatial scales separated by four orders of magnitude. In summer, competition was important at both scales. In winter, there was net facilitation at the small scale with no evidence of density dependence at the large scale. The mechanism for facilitation is probably density dependent protection from wave dislodgement. Intraspecific interactions in soft sediment mussel beds thus vary both temporally and spatially. Our data support the idea that pattern formation in ecological systems arises from competition at large scales and facilitation at smaller scales, so far only shown in vegetation systems. The data, and a simple, heuristic model, also suggest that facilitative interactions in sessile biota are mediated by physical stress, and that interactions change in strength and sign along a spatial or temporal gradient of physical stress.

摘要

固着生物群落之间既可能相互竞争,也可能相互促进,而在不同空间尺度上促进作用与竞争作用的相互影响是形成空间斑块性和格局的关键。我们研究了有特定格局的软质沉积物贻贝床中的密度和尺度依赖性。我们在相隔四个数量级的两个空间尺度上跟踪贻贝的生长和密度。在夏季,竞争在两个尺度上都很重要。在冬季,小尺度上存在净促进作用,而大尺度上没有密度依赖性的证据。促进作用的机制可能是依赖密度的对海浪冲击的防护。因此,软质沉积物贻贝床中的种内相互作用在时间和空间上都会发生变化。我们的数据支持这样一种观点,即生态系统中的格局形成源于大尺度上的竞争和小尺度上的促进作用,到目前为止这一观点仅在植被系统中得到证实。这些数据以及一个简单的启发式模型还表明,固着生物群落中的促进性相互作用是由物理胁迫介导的,并且这些相互作用会随着物理胁迫的空间或时间梯度在强度和符号上发生变化。

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