首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Toward Spider Glue: Long Read Scaffolding for Extreme Length and Repetitious Silk Family Genes AgSp1 and AgSp2 with Insights into Functional Adaptation
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Toward Spider Glue: Long Read Scaffolding for Extreme Length and Repetitious Silk Family Genes AgSp1 and AgSp2 with Insights into Functional Adaptation

机译:迈向蜘蛛胶:用于超长长度和重复性丝绸家族基因AgSp1和AgSp2的长期阅读支架并深入了解功能适应性

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摘要

An individual orb weaving spider can spin up to seven different types of silk, each with unique functions and material properties. The capture spiral silk of classic two-dimensional aerial orb webs is coated with an amorphous glue that functions to retain prey that get caught in a web. This unique modified silk is partially comprised of spidroins (spider fibroins) encoded by two members of the silk gene family. The glue differs from solid silk fibers as it is a viscoelastic, amorphic, wet material that is responsive to environmental conditions. Most spidroins are encoded by extremely large, highly repetitive genes that cannot be sequenced using short read technology alone, as the repetitive regions are longer than read length. We sequenced for the first time the complete genomic Aggregate Spidroin 1 (AgSp1) and Aggregate Spidroin 2 (AgSp2) glue genes of orb weaving spider Argiope trifasciata using error-prone long reads to scaffold for high accuracy short reads. The massive coding sequences are 42,270 bp (AgSp1) and 20,526 bp (AgSp2) in length, the largest silk genes currently described. The majority of the predicted amino acid sequence of AgSp1 consists of two similar but distinct motifs that are repeated ∼40 times each, while AgSp2 contains ∼48 repetitions of an AgSp1-similar motif, interspersed by regions high in glutamine. Comparisons of AgSp repetitive motifs from orb web and cobweb spiders show regions of strict conservation followed by striking diversification. Glues from these two spider families have evolved contrasting material properties in adhesion (stickiness), extensibility (stretchiness), and elasticity (the ability of the material to resume its native shape), which we link to mechanisms established for related silk genes in the same family. Full-length aggregate spidroin sequences from diverse species with differing material characteristics will provide insights for designing tunable bio-inspired adhesives for a variety of unique purposes.
机译:单个球状编织蜘蛛最多可以纺成七种不同类型的丝绸,每种丝绸都具有独特的功能和材料特性。经典的二维航空球网的捕获螺旋丝上涂有无定形胶,其作用是保留被网捕获的猎物。这种独特的修饰蚕丝部分由由蚕丝基因家族的两个成员编码的蜘蛛蛋白(蜘蛛丝蛋白)组成。该胶水不同于固体丝纤维,因为它是对环境条件敏感的粘弹性,非晶态,湿材料。大多数spidroin由非常大的,高度重复的基因编码,这些基因不能单独使用短读技术进行测序,因为重复区域的长度大于读取长度。我们首次使用易错的长读对支架进行高准确度短读的测序,对天体编织蜘蛛Argiope trifasciata的完整基因组聚合螺旋蛋白1(AgSp1)和聚合螺旋蛋白2(AgSp2)胶基因进行了首次测序。大量编码序列的长度为42,270 bp(AgSp1)和20,526 bp(AgSp2),是目前描述的最大的丝基因。 AgSp1的大多数预测氨基酸序列由两个相似但截然不同的基序组成,每个基序重复约40次,而AgSp2包含约48个重复的AgSp1类似基序,并散布有谷氨酰胺含量高的区域。来自球网蜘蛛和蜘蛛网蜘蛛的AgSp重复图案的比较显示出严格保护的区域,然后是多样化的区域。这两个蜘蛛家族的胶水在粘合性(粘性),延展性(拉伸性)和弹性(材料恢复其原始形状的能力)方面发展出了对比鲜明的材料特性,我们将它们链接到为同一丝基因建立的机制。家庭。来自具有不同材料特性的不同物种的全长骨胶体序列,将为设计可调谐的生物启发型胶粘剂提供各种见识,以用于各种独特的目的。

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