Vargas Alexandra M, DeBiasse Melissa B, Dykes Lana L, Edgar Allison, Hayes T Danielle, Groso Daniel J, Babonis Leslie S, Martindale Mark Q, Ryan Joseph F
Whitney Laboratory for Marine Bioscience, University of Florida, St. Augustine, FL 32080, USA.
Department of Biological Sciences, University of North Carolina at Charlotte, Charlotte, NC 28223, USA.
NAR Genom Bioinform. 2024 Jun 18;6(2):lqae072. doi: 10.1093/nargab/lqae072. eCollection 2024 Jun.
As the sister group to all other animals, ctenophores (comb jellies) are important for understanding the emergence and diversification of numerous animal traits. Efforts to explore the evolutionary processes that promoted diversification within Ctenophora are hindered by undersampling genomic diversity within this clade. To address this gap, we present the sequence, assembly and initial annotation of the genome of . possess unique morphology, behavior, ecology and development. Unlike their generalist carnivorous kin, beroid ctenophores feed exclusively on other ctenophores. Accordingly, our analyses revealed a loss of chitinase, an enzyme critical for the digestion of most non-ctenophore prey, but superfluous for ctenophorivores. Broadly, our genomic analysis revealed that extensive gene loss and changes in gene regulation have shaped the unique biology of . Despite the gene losses in , our phylogenetic analyses on photosensitive opsins and several early developmental regulatory genes show that these genes are conserved in . This additional sampling contributes to a more complete reconstruction of the ctenophore ancestor and points to the need for extensive comparisons within this ancient and diverse clade of animals. To promote further exploration of these data, we present BovaDB (http://ryanlab.whitney.ufl.edu/bovadb/), a portal for the genome.
作为所有其他动物的姐妹类群,栉水母对于理解众多动物特征的出现和多样化很重要。探索促进栉水母类内部多样化的进化过程的努力受到该类群内基因组多样性采样不足的阻碍。为了填补这一空白,我们展示了 的基因组序列、组装和初步注释。 具有独特的形态、行为、生态和发育。与它们杂食性的同类不同,钵水母纲栉水母仅以其他栉水母为食。因此,我们的分析揭示了几丁质酶的缺失,这种酶对于消化大多数非栉水母猎物至关重要,但对于以栉水母为食的动物来说是多余的。总体而言,我们的基因组分析表明,广泛的基因丢失和基因调控变化塑造了 的独特生物学特性。尽管 存在基因丢失,但我们对光敏视蛋白和几个早期发育调控基因的系统发育分析表明,这些基因在 中是保守的。这种额外的采样有助于更完整地重建栉水母祖先,并指出需要在这个古老而多样的动物类群中进行广泛比较。为了促进对这些数据的进一步探索,我们展示了BovaDB(http://ryanlab.whitney.ufl.edu/bovadb/),一个用于 基因组的门户。