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水合作用会影响须鲸组织的物理和力学性能。

Hydration affects the physical and mechanical properties of baleen tissue.

作者信息

Werth Alexander J, Harriss Robert W, Rosario Michael V, George J Craig, Sformo Todd L

机构信息

Department of Biology, Hampden-Sydney College , Hampden-Sydney , VA 23943 , USA.

Department of Biology , Duke University , Durham, NC 27706 , USA.

出版信息

R Soc Open Sci. 2016 Oct 26;3(10):160591. doi: 10.1098/rsos.160591. eCollection 2016 Oct.

Abstract

Baleen, an anisotropic oral filtering tissue found only in the mouth of mysticete whales and made solely of alpha-keratin, exhibits markedly differing physical and mechanical properties between dried or (as in life) hydrated states. On average baleen is 32.35% water by weight in North Atlantic right whales () and 34.37% in bowhead whales (). Baleen's wettability measured by water droplet contact angles shows that dried baleen is hydrophobic whereas hydrated baleen is highly hydrophilic. Three-point flexural bending tests of mechanical strength reveal that baleen is strong yet ductile. Dried baleen is brittle and shatters at about 20-30 N mm but hydrated baleen is less stiff; it bends with little force and absorbed water is squeezed out when force is applied. Maximum recorded stress was 4× higher in dried (mean 14.29 N mm) versus hydrated (mean 3.69 N mm) baleen, and the flexural stiffness was >10× higher in dried (mean 633N mm) versus hydrated (mean 58 N mm) baleen. In addition to documenting hydration's powerful effects on baleen, this study indicates that baleen is far more pliant and malleable than commonly supposed, with implications for studies of baleen's structure and function as well as its susceptibility to oil or other hydrophobic pollutants.

摘要

须板是一种仅在须鲸口腔中发现的各向异性口腔过滤组织,完全由α-角蛋白构成,在干燥状态或(如在活体中)水合状态下,其物理和机械性能存在显著差异。北大西洋露脊鲸的须板平均含水量按重量计为32.35%,弓头鲸的须板平均含水量为34.37%。通过水滴接触角测量须板的润湿性表明,干燥的须板具有疏水性,而水合的须板具有高度亲水性。机械强度的三点弯曲试验表明,须板坚固且具有韧性。干燥的须板易碎,在约20 - 30 N/mm时会破碎,但水合的须板刚度较小;它只需很小的力就能弯曲,施加力时会挤出吸收的水分。干燥须板(平均14.29 N/mm)的最大记录应力比水合须板(平均3.69 N/mm)高4倍,干燥须板(平均633 N/mm)的弯曲刚度比水合须板(平均58 N/mm)高10倍以上。除了记录水合作用对须板的强大影响外,这项研究还表明,须板比通常认为的更柔韧且具有延展性,这对须板的结构和功能研究以及其对油或其他疏水性污染物的敏感性研究具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27bc/5099004/66d44c0c016b/rsos160591-g1.jpg

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