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年龄会影响海藻组织力学性能的应变速率依赖性。

Age affects the strain-rate dependence of mechanical properties of kelp tissues.

机构信息

Department of Integrative Biology, University of California, Berkeley, CA, 94720, USA.

出版信息

Am J Bot. 2021 May;108(5):769-776. doi: 10.1002/ajb2.1662. Epub 2021 May 16.

Abstract

PREMISE

The resistance of macroalgae to hydrodynamic forces imposed by ambient water motion depends in part on the mechanical properties of their tissues. In wave-swept habitats, tissues are stretched (strained) at different rates as hydrodynamic forces change. Previous studies of mechanical properties of macroalgal tissues have used either a single strain rate or a small range of strain rates. Therefore, our knowledge of the mechanical properties of macroalgae is limited to a narrow fraction of the strain rates that can occur in nature. In addition, although mechanical properties of macroalgal tissues change with age, the effect of age on the strain-rate dependence of their mechanical behavior has not been documented.

METHODS

Using the kelp Egregia menziesii, we measured how high strain rate (simulating wave impingement) and low strain rate (simulating wave surge) affected mechanical properties of frond tissues of various ages.

RESULTS

Stiffness of tissues of all ages increased with strain rate, whereas extensibility was unaffected. Strength and toughness increased with strain rate for young tissue but were unaffected by strain rate for old tissue.

CONCLUSIONS

Young tissue is weaker than old tissue and, therefore, the most susceptible to breakage from hydrodynamic forces. The increased strength of young tissue at high strain rates can help the frond resist breaking when pulled rapidly during wave impingement, when hydrodynamic forces are largest. Because breakage of young tissue can remove a frond's meristem and negatively impact the survival of the whole kelp, strain-rate dependence of the young tissue's strength can enhance kelp's survival.

摘要

前提

海藻对环境水流动力施加的阻力在一定程度上取决于其组织的机械特性。在波浪冲刷的栖息地中,当水流动力发生变化时,组织会以不同的速率拉伸(应变)。先前对海藻组织机械性能的研究要么使用单一应变率,要么使用小范围的应变率。因此,我们对海藻机械性能的了解仅限于自然界中可能出现的应变率的一小部分。此外,尽管海藻组织的机械性能会随年龄而变化,但年龄对其机械行为应变率依赖性的影响尚未有记录。

方法

我们使用巨藻 Egregia menziesii,测量了高应变率(模拟波浪冲击)和低应变率(模拟波浪涌动)如何影响不同年龄的叶片组织的机械性能。

结果

所有年龄段组织的刚性都随应变率增加而增加,而伸展性不受影响。对于年轻组织,强度和韧性随应变率增加而增加,但对于老年组织,应变率对其无影响。

结论

年轻组织比老年组织弱,因此最容易受到水流动力的破坏。在波浪冲击期间,当水流动力最大时,快速拉动叶片会使年轻组织的强度增加,从而帮助叶片抵抗断裂。由于年轻组织的断裂会去除叶片的顶端分生组织并对整个巨藻的生存产生负面影响,因此年轻组织强度的应变率依赖性可以增强巨藻的生存能力。

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