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首页> 外文期刊>Biomacromolecules >An Unlikely Silk: The Composite Material of Green Lacewing Cocoons
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An Unlikely Silk: The Composite Material of Green Lacewing Cocoons

机译:不可能的丝绸:绿色草La茧的复合材料

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Spiders routinely produce multiple types of silk; however, common wisdom has held that insect species produce one type of silk each. This work reports that the green lacewing (Mallada signata, Neuroptera) produces two distinct classes of silk. We identified and sequenced the gene that encodes the major protein component of the larval lacewing cocoon silk and demonstrated that it is unrelated to the adult lacewing egg-stalk silk. The cocoon silk protein is 49 kDa in size and is alanine rich (>40%), and it contains an α-helical secondary structure. The final instar lacewing larvae spin protein fibers of ~2 μm diameter to construct a loosely woven cocoon. In a second stage of cocoon construction, the insects lay down an inner wall of lipids that uses the fibers as a scaffold. We propose that the silk protein fibers provide the mechanical strength of the composite lacewing cocoon whereas the lipid layer provides a barrier to water loss during pupation.
机译:蜘蛛通常会生产多种类型的丝绸。但是,根据常识,昆虫种类每一种都会产生一种丝。这项工作报告说,绿色的草wing(Mallada signata,Neuroptera)产生两种截然不同的丝绸。我们鉴定并测序了编码幼虫lace茧茧丝主要蛋白质成分的基因,并证明它与成年lace虫卵茎丝无关。茧丝蛋白大小为49 kDa,富含丙氨酸(> 40%),并且包含α-螺旋二级结构。最终的幼虫幼虫自旋蛋白纤维直径约2μm,构成一个松散编织的茧。在茧构造的第二阶段,昆虫将脂质沉积在内壁上,该脂质将纤维用作支架。我们提出,丝蛋白纤维提供了复合草lace茧的机械强度,而脂质层为化up过程中的水分流失提供了屏障。

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