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昆虫丝:一个名称,多种材料。

Insect silk: one name, many materials.

机构信息

CSIRO Entomology, Canberra, ACT 2601, Australia.

出版信息

Annu Rev Entomol. 2010;55:171-88. doi: 10.1146/annurev-ento-112408-085401.

Abstract

Silks play a crucial role in the survival and reproduction of many insects. Labial glands, Malpighian tubules, and a variety of dermal glands have evolved to produce these silks. The glands synthesize silk proteins, which become semicrystalline when formed into fibers. Although each silk contains one dominant crystalline structure, the range of molecular structures that can form silk fibers is greater than any other structural protein group. On the basis of silk gland type, silk protein molecular structure, and the phylogenetic relationship of silk-producing species, we grouped insect silks into 23 distinct categories, each likely to represent an independent evolutionary event. Despite having diverse functions and fundamentally different protein structures, these silks typically have high levels of protein crystallinity and similar amino acid compositions. The substantial crystalline content confers extraordinary mechanical properties and stability to silk and appears to be required for production of fine protein fibers.

摘要

丝在许多昆虫的生存和繁殖中起着至关重要的作用。唇腺、马尔皮基氏小管和各种真皮腺已经进化到可以产生这些丝。这些腺体合成丝蛋白,当形成纤维时,这些丝蛋白会变成半结晶状态。尽管每种丝都含有一种主要的结晶结构,但能够形成丝纤维的分子结构范围比任何其他结构蛋白组都要大。根据丝腺类型、丝蛋白分子结构以及产丝物种的系统发育关系,我们将昆虫丝分为 23 个不同的类别,每个类别可能代表一个独立的进化事件。尽管具有不同的功能和截然不同的蛋白质结构,但这些丝通常具有较高的蛋白质结晶度和相似的氨基酸组成。大量的晶体含量赋予了丝非凡的机械性能和稳定性,而且似乎是产生精细蛋白质纤维所必需的。

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