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Size, strength and allometry of joints in the articulated coralline Calliarthron

机译:铰接式珊瑚Calliarthron关节的大小,强度和变长

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摘要

Articulated coralline algae (Corallinales, Rhodophyta) dominate low-intertidal, wave-exposed habitats around the world, yet the mechanics of this diverse group of organisms has been almost completely unexplored. In contrast to fleshy seaweeds, articulated corallines consist of calcified segments (intergenicula) separated by uncalcified joints ( genicula). This jointed construction makes calcified fronds as flexible as fleshy seaweeds, allowing them to 'go with the flow' when struck by breaking waves. In addition to functioning as joints, genicula act as breakage points along articulated fronds. Here, I describe the allometric scaling of geniculum size, breaking force and tissue strength along articulated fronds in two species of Calliarthron. Genicular material is much stronger than tissue from fleshy macroalgae. Moreover, as fronds grow, genicula get bigger and their tissue strengthens, two processes that help them resist breakage. Within individual fronds, larger branches, which presumably experience greater drag force, are supported by bigger, stronger genicula. However, frond growth greatly outpaces genicular strengthening. As a result, Calliarthron fronds most likely break at their bases when critically stressed by incoming waves. Shedding fronds probably reduces the drag force that threatens to dislodge coralline crusts and may constitute a reproductive strategy.
机译:铰接的珊瑚藻(Corallinales,Rhodophyta)在世界各地低潮,潮汐生境中占主导地位,但这种多样性生物的机制几乎尚未被完全探索。与肉质海藻相反,铰接的珊瑚线由钙化节段(间生菌)和未钙化节理(成虫)隔开。这种接头结构使钙化叶状体像肉质海藻一样柔韧,使它们在被海浪撞击时能“顺其自然”。除了起关节的作用外,膝部还作为关节的叶状体的断裂点。在这里,我描述了两种Calliarthron中沿关节状叶的genic部大小,断裂力和组织强度的异速生长比例。基因组物质比肉质大型藻类组织强得多。此外,随着叶状体的生长,膝状体变大,组织增强,这两个过程帮助它们抵抗断裂。在各个叶状体中,可能受到较大拖曳力的较大分支受到较大,更强的属的支持。但是,叶状体的生长大大超过了生殖器的强化。结果,Calliarthron叶状体在受到海浪的巨大压力时很可能在其底部破裂。叶状体的脱落可能会降低拖曳力,该拖曳力可能会使珊瑚结皮脱落,并可能构成繁殖策略。

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