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The First Myriapod Genome Sequence Reveals Conservative Arthropod Gene Content and Genome Organisation in the Centipede Strigamia maritima

机译:第一个无足纲的基因组序列揭示了St脚线虫的保守节肢动物基因含量和基因组组织。

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摘要

Myriapods (e.g., centipedes and millipedes) display a simple homonomous body plan relative to other arthropods. All members of the class are terrestrial, but they attained terrestriality independently of insects. Myriapoda is the only arthropod class not represented by a sequenced genome. We present an analysis of the genome of the centipede Strigamia maritima. It retains a compact genome that has undergone less gene loss and shuffling than previously sequenced arthropods, and many orthologues of genes conserved from the bilaterian ancestor that have been lost in insects. Our analysis locates many genes in conserved macro-synteny contexts, and many small-scale examples of gene clustering. We describe several examples where S. maritima shows different solutions from insects to similar problems. The insect olfactory receptor gene family is absent from S. maritima, and olfaction in air is likely effected by expansion of other receptor gene families. For some genes S. maritima has evolved paralogues to generate coding sequence diversity, where insects use alternate splicing. This is most striking for the Dscam gene, which in Drosophila generates more than 100,000 alternate splice forms, but in S. maritima is encoded by over 100 paralogues. We see an intriguing linkage between the absence of any known photosensory proteins in a blind organism and the additional absence of canonical circadian clock genes. The phylogenetic position of myriapods allows us to identify where in arthropod phylogeny several particular molecular mechanisms and traits emerged. For example, we conclude that juvenile hormone signalling evolved with the emergence of the exoskeleton in the arthropods and that RR-1 containing cuticle proteins evolved in the lineage leading to Mandibulata. We also identify when various gene expansions and losses occurred. The genome of S. maritima offers us a unique glimpse into the ancestral arthropod genome, while also displaying many adaptations to its specific life history.
机译:相对于其他节肢动物,无足纲动物(例如ipe和千足虫)显示出简单的均一身体计划。该类别的所有成员都是陆地动物,但他们独立于昆虫而获得了陆地动物。 Myriapoda是唯一的节肢动物类,没有序列化的基因组代表。我们提出了StStrrigamia maritima的基因组分析。它保留了一个紧凑的基因组,该基因组比先前测序的节肢动物经历了更少的基因损失和改组,并且许多双侧祖先保守的直系同源基因在昆虫中已经丢失。我们的分析在保守的宏观同步环境中找到了许多基因,并且发现了许多小规模的基因聚类实例。我们描述了几个例子,其中海链球菌显示了从昆虫到类似问题的不同解决方案。玛丽链球菌中不存在昆虫嗅觉受体基因家族,而空气中的嗅觉很可能受到其他受体基因家族的扩展的影响。对于某些基因,海马链球菌进化了旁系同源物以产生编码序列多样性,其中昆虫使用了交替剪接。对于Dscam基因而言,这是最惊人的,它在果蝇中产生了超过100,000个交替的剪接形式,而在海链球菌中则由100多个旁系同源物编码。我们看到在盲人生物中不存在任何已知的光敏蛋白与典范的昼夜节律时钟基因的额外不存在之间的有趣联系。无足动物的系统发育位置使我们能够确定节肢动物系统发育中几个特定的​​分子机制和性状出现的位置。例如,我们得出结论,随着节肢动物中外骨骼的出现,幼稚激素信号发生进化,而含有RR-1的角质层蛋白在导致下颌的谱系中进化。我们还确定何时发生各种基因扩增和丢失。滨海链球菌的基因组使我们对祖先节肢动物的基因组有了独特的了解,同时还展示了对其特定生活史的许多适应。

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