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潮间带大型藻类之间水动力性能和结构特性的种间比较。

Interspecific comparison of hydrodynamic performance and structural properties among intertidal macroalgae.

作者信息

Boller Michael L, Carrington Emily

机构信息

Department of Biological Sciences, University of Rhode Island, Kingston, RI 02881, USA.

出版信息

J Exp Biol. 2007 Jun;210(Pt 11):1874-84. doi: 10.1242/jeb.02775.

Abstract

Macroalgae use flexibility and reconfiguration, i.e. the alteration of shape, size and orientation as water velocity increases, to reduce the hydrodynamic forces imposed in the wave-swept rocky intertidal zone. Quantifying the effects of flexibility on hydrodynamic performance is difficult, however, because the mechanisms of reconfiguration vary with water velocity and the relationship between algal solid mechanics and hydrodynamic performance is poorly understood. In this study, the hydrodynamic performance, morphology and solid mechanics of 10 rocky shore macroalgal species were quantified to evaluate the influences of flexibility and morphology on reconfiguration. Hydrodynamic performance was measured in a flume by direct measurement of changes in size and shape during reconfiguration across a wide range of velocities, material stiffness was quantified with standard materials testing, and structural properties were calculated from material and morphological data. Hydrodynamic parameters varied significantly among species, indicating variation in the magnitude of reconfiguration and the velocities required for full reconfiguration. Structural properties also varied among species, and were correlated with hydrodynamic performance in some instances. The relationship between hydrodynamic and structural properties is velocity dependent, such that flexibility influences different aspects of reconfiguration at low and high velocities. Groups are identifiable among species based on hydrodynamic and structural properties, suggesting that these properties are useful for addressing functional-form hypotheses and the effects of hydrodynamic disturbance on macroalgal communities.

摘要

大型海藻利用柔韧性和重构作用,即随着水流速度增加而改变形状、大小和方向,来减少在海浪冲刷的岩石潮间带所受到的水动力。然而,量化柔韧性对水动力性能的影响很困难,因为重构机制会随水流速度而变化,而且藻类固体力学与水动力性能之间的关系还不太清楚。在本研究中,对10种岩石海岸大型海藻的水动力性能、形态和固体力学进行了量化,以评估柔韧性和形态对重构的影响。通过在水槽中直接测量在很宽的速度范围内重构过程中大小和形状的变化来测定水动力性能,用标准材料测试来量化材料刚度,并根据材料和形态数据计算结构特性。水动力参数在不同物种之间有显著差异,表明重构程度和完全重构所需速度存在差异。结构特性在不同物种之间也有所不同,并且在某些情况下与水动力性能相关。水动力特性与结构特性之间的关系取决于速度,因此柔韧性在低速和高速时会影响重构的不同方面。根据水动力和结构特性可以在物种之间识别出不同的类别,这表明这些特性有助于探讨功能形式假说以及水动力干扰对大型海藻群落的影响。

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