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The bagworm genome reveals a unique fibroin gene that provides high tensile strength

机译:worm虫基因组揭示了独特的纤维蛋白基因可提供高抗张强度

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摘要

Arthropod silk is known as a versatile tool, and its variability makes it an attractive biomaterial. Eumeta variegata is a bagworm moth (Lepidoptera, Psychidae) that uses silk throughout all life stages. Notably, the bagworm-specific uses of silk include larval development in a bag coated with silk and plant materials and the use of silk attachments to hang pupae. An understanding at the molecular level of bagworm silk, which enables such unique purposes, is an opportunity to expand the possibilities for artificial biomaterial design. However, very little is known about the bagworm fibroin gene and the mechanical properties of bagworm silk. Here, we report the bagworm genome, including a silk fibroin gene. The genome is approximately 700 Mbp in size, and the newly found fibroin gene has a unique repetitive motif. Furthermore, a mechanical property test demonstrates a phylogenetic relationship between the unique motif and tensile strength of bagworm silk.
机译:节肢动物丝绸被称为多功能工具,其可变性使其成为一种有吸引力的生物材料。 Evarita variegata是一种bag虫(鳞翅目,silk科),在整个生命阶段都使用蚕丝。值得注意的是,蚕对蚕的特定用途包括在涂有蚕丝和植物材料的袋子中发育幼虫,以及使用蚕丝附件悬挂p。对实现这种独特目的的bag虫分子的分子水平的理解,为扩大人工生物材料设计的可能性提供了机会。但是,关于the虫纤维蛋白基因和bag虫丝的机械特性知之甚少。在这里,我们报告了bag虫基因组,包括一个丝素蛋白基因。基因组大小约为700 Mbp,新发现的丝心蛋白基因具有独特的重复基序。此外,机械性能测试证明了bag虫蚕丝的独特图案和拉伸强度之间的系统发育关系。

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