幼牛海带的结垢及结构特性。

IF 2.2 4区 生物学 Q2 BIOLOGY
Integrative Organismal Biology Pub Date : 2021-08-14 eCollection Date: 2021-01-01 DOI:10.1093/iob/obab022
Katie A Dobkowski, Stephanie B Crofts
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引用次数: 1

摘要

牛海带(Nereocystis luetkeana)是萨利希海唯一的冠状海带,在近岸潮下环境中提供初级生产,是经济和生态重要物种的重要栖息地。作为一年生物种,每年幼嫩的牛海带孢子体必须从水动力学上更温和的底栖生物生长到水柱,在那里它们经历了巨大的表面阻力。由于不同生命阶段的形态和生态差异,以及之前的研究主要集中在成年牛海带上,我们研究了形态和结构特性是否随着茎尖长度的变化而变化,研究了两种幼海带(茎尖长度为40 cm)的结垢情况,并测试了幼海带的结垢情况。幼牛海带幼时按比例生长(等长生长),但在成熟时比球茎大小(负异速生长)预测的要长得快。根据我们的数据,等长和异速生长之间的预测断点发生在大约33厘米处,可能大约是生长的一到两周。杆的截面积、失效力、失效功和刚度(杨氏模量)的增长速度都比基于长度的预测要慢,而最大应力和韧性的增长速度比预测要快。在我们测试的尺寸范围内,延伸性没有变化,这表明这种材料性能不随杆长而变化。幼海带和成海带在生物力学上的差异可能是对每年生命周期中所经历的不同水动力环境的反应,这凸显了跨生命阶段研究生物的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Scaling and Structural Properties of Juvenile Bull Kelp (<i>Nereocystis luetkeana</i>).

Scaling and Structural Properties of Juvenile Bull Kelp (<i>Nereocystis luetkeana</i>).

Scaling and Structural Properties of Juvenile Bull Kelp (<i>Nereocystis luetkeana</i>).

Scaling and Structural Properties of Juvenile Bull Kelp (Nereocystis luetkeana).

Bull kelp (Nereocystis luetkeana), the only canopy-forming kelp in the Salish Sea, provides primary production in the nearshore subtidal environment and serves as an important habitat for economically and ecologically important species. An annual species, each year juvenile bull kelp sporophytes must grow from the hydrodynamically more benign benthos to the water column, where they experience substantial drag at the surface. Because of the differences in morphology and ecology across life stages, and the fact that previous work has focused mainly on adult bull kelp, we tested whether morphology and structural properties change with stipe length, investigating scaling of both juvenile (stipe length < 40 cm) and mature (stipe length > 40 cm) kelp, and testing how juvenile stipes fail. Juvenile bull kelp grow proportionally (isometric growth) when young, but lengthen more quickly than would be predicted by bulb size (negative allometry) at maturity. Based on our data, the predicted breakpoint between isometric and allometric growth occurred at about 33 cm, likely approximately one to two weeks of growth. Cross-sectional area of the stipe, force to failure, work to failure, and stiffness (Young's modulus) all grow more slowly than would be predicted based on length, while maximum stress and toughness increase more quickly than predicted. There is no change in extensibility over the size range we tested, suggesting that this material property does not change with stipe length. The differences in biomechanics between juvenile and adult kelp are likely a response to the varied hydrodynamic environments experienced during the annual life cycle, which highlights the importance of studying organisms across life stages.

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来源期刊
CiteScore
3.70
自引率
6.70%
发文量
48
审稿时长
20 weeks
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