Spiders produce multiple silks with different physical properties that allow them to occupy a diverse range of ecological niches, including the underwater environment. Despite this functional diversity, past molecular analyses show a high degree of amino acid sequence similarity between C-terminal regions of silk genes that appear to be independent of the physical properties of the resulting silks; instead, this domain is crucial to the formation of silk fibres. Here we present an analysis of the C-terminal domain of all known types of spider silk and include silk sequences from the spider Argyroneta aquatica, which spins the majority of its silk underwater. Our work indicates that spiders have retained a highly conserved mechanism of silk ...
Spiders are very diverse and inhabit most terrestrial environments. Spiders are renowned for their s...
Spider silk is tougher than all other known natural and man-made fibers, and represents an environme...
Spider silk is tougher than all other known natural and man-made fibers, and represents an environme...
Spiders produce multiple silks with different physical properties that allow them to occupy a divers...
Spiders produce multiple silks with different physical properties that allow them to occupy a divers...
Spider silks display a remarkable array of properties, making them an area of great interest in biot...
Spider silks display a remarkable array of properties, making them an area of great interest in biot...
Spider silks are among the toughest known materials and thus provide models for renewable, biodegrad...
Spider silk is a promising biomaterial with impressive performance. However, some spider silks also ...
Orb-weaving spider silk fibers are assembled from very large, highly repetitive proteins. The repeat...
Spiders are exceptionally diverse and abundant organisms in terrestrial ecosystems and their evoluti...
Spiders are exceptionally diverse and abundant organisms in terrestrial ecosystems and their evoluti...
Spider silk is tougher than all other known natural and man-made fibers, and represents an environme...
Silk spinning is essential to spider ecology and has had a key role in the expansive diversification...
Spiders are very diverse and inhabit most terrestrial environments. Spiders are renowned for their s...
Spiders are very diverse and inhabit most terrestrial environments. Spiders are renowned for their s...
Spider silk is tougher than all other known natural and man-made fibers, and represents an environme...
Spider silk is tougher than all other known natural and man-made fibers, and represents an environme...
Spiders produce multiple silks with different physical properties that allow them to occupy a divers...
Spiders produce multiple silks with different physical properties that allow them to occupy a divers...
Spider silks display a remarkable array of properties, making them an area of great interest in biot...
Spider silks display a remarkable array of properties, making them an area of great interest in biot...
Spider silks are among the toughest known materials and thus provide models for renewable, biodegrad...
Spider silk is a promising biomaterial with impressive performance. However, some spider silks also ...
Orb-weaving spider silk fibers are assembled from very large, highly repetitive proteins. The repeat...
Spiders are exceptionally diverse and abundant organisms in terrestrial ecosystems and their evoluti...
Spiders are exceptionally diverse and abundant organisms in terrestrial ecosystems and their evoluti...
Spider silk is tougher than all other known natural and man-made fibers, and represents an environme...
Silk spinning is essential to spider ecology and has had a key role in the expansive diversification...
Spiders are very diverse and inhabit most terrestrial environments. Spiders are renowned for their s...
Spiders are very diverse and inhabit most terrestrial environments. Spiders are renowned for their s...
Spider silk is tougher than all other known natural and man-made fibers, and represents an environme...
Spider silk is tougher than all other known natural and man-made fibers, and represents an environme...