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首页> 外文期刊>Molecular Biology and Evolution >Multiple Recombining Loci Encode MaSp1, the Primary Constituent of Dragline Silk, in Widow Spiders (Latrodectus: Theridiidae)
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Multiple Recombining Loci Encode MaSp1, the Primary Constituent of Dragline Silk, in Widow Spiders (Latrodectus: Theridiidae)

机译:多股重组基因座编码寡妇蜘蛛中拉丝线丝的主要成分MaSp1(Latrodectus:Theridiidae)

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Spiders spin a functionally diverse array of silk fibers, each composed of one or more unique proteins. Most of these proteins, in turn, are encoded by members of a single gene family thought to have arisen through duplication and divergence of an ancestral silk gene. Because of its remarkable mechanical properties, orb weaver dragline silk, a composite of 2 proteins (MaSp1 and MaSp2), is the best studied. Here, we demonstrate that multiple loci encode MaSp1 in widow spiders (Latrodectus). Because these copies may be the result of more recent duplication events than those leading to the currently recognized silk gene paralogs, they offer insight into the early evolutionary fate of silk gene duplicates. In addition to 3 presumed functional MaSp1 loci in Latrodectus hesperus (Western black widow) and Latrodectus geometricus (brown widow) genomes, we find a MaSp1 pseudogene in L. hesperus, demonstrating the potential for unrecognized extinction of silk gene paralogs. We also document recombination events among L. hesperus MaSp1 loci and between Latrodectus MaSp1 loci and MaSp2. This result supports the hypothesis that concerted evolution occurs not only within an individual silk gene but also among silk gene paralogs. One of the L. geometricus MaSp1 copies encodes a protein that has diverged in amino acid composition and potentially converged on the secondary structure of MaSp2. Based on the presence of multiple MaSp1 loci and the phylogenetic distribution of MaSp1 versus MaSp2, we propose that MaSp2 is derived from an ancestral MaSp1 duplicate. Finally, divergence has occurred in the upstream flanking sequences of the L. hesperus MaSp1 loci, the region most likely to contain regulatory motifs, providing ample opportunity for differential expression. However, the benefits associated with increased protein production may be the primary mechanism maintaining multiple functional MaSp1 copies in widow genomes.
机译:蜘蛛旋转着功能多样的丝纤维,每条丝纤维都由一种或多种独特的蛋白质组成。这些蛋白质中的大多数依次由单个基因家族的成员编码,这些家族被认为是通过祖先丝绸基因的复制和发散而产生的。由于其卓越的机械性能,对2种蛋白质(MaSp1和MaSp2)的复合材料-天球织机拉丝丝进行了研究。在这里,我们证明了多个基因座在寡妇蜘蛛(Latrodectus)中编码MaSp1。因为这些拷贝可能是比导致当前公认的丝基因平行同源物的事件更多的最近复制事件的结果,所以它们提供了对丝基因拷贝的早期进化命运的洞察力。除了3个假定的功能性MaSp1基因座在西洋黑寡妇(西方黑寡妇)和几何拉特古斯(褐寡妇)基因组中,我们在西伯利亚乳杆菌中发现了MaSp1假基因,证明了丝基因旁系同源物未被识别的灭绝的可能性。我们还记录了重组事件之间的杂交非洲菊属植物MaSp1基因座之间和Latrodectus MaSp1基因座和MaSp2之间。该结果支持这样的假说:协同进化不仅在单个丝基因内发生,而且在丝基因旁系同源物中也发生。几何乳杆菌MaSp1拷贝之一编码一种蛋白质,该蛋白质的氨基酸组成不同,并且可能会聚在MaSp2的二级结构上。基于多个MaSp1基因座的存在以及MaSp1与MaSp2的系统发育分布,我们建议MaSp2源自祖先的MaSp1重复项。最后,在L. hesperus MaSp1基因座的上游侧翼序列中发生了分歧,该区域最可能包含调节基序,为差异表达提供了充足的机会。但是,与增加蛋白质产量相关的好处可能是在寡妇基因组中维持多个功能性MaSp1拷贝的主要机制。

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