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首页> 外文期刊>EvoDevo >Evolutionary loss of melanogenesis in the tunicate Molgula occulta
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Evolutionary loss of melanogenesis in the tunicate Molgula occulta

机译:被膜被膜植物黑变种的黑色素生成进化损失

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BackgroundAnalyzing close species with diverse developmental modes is instrumental for investigating the evolutionary significance of physiological, anatomical and behavioral features at a molecular level. Many examples of trait loss are known in metazoan populations living in dark environments. Tunicates are the closest living relatives of vertebrates and typically present a lifecycle with distinct motile larval and sessile adult stages. The nervous system of the motile larva contains melanized cells associated with geotactic and light-sensing organs. It has been suggested that these are homologous to vertebrate neural crest-derived melanocytes. Probably due to ecological adaptation to distinct habitats, several species of tunicates in the Molgulidae family have tailless (anural) larvae that fail to develop sensory organ-associated melanocytes. Here we studied the evolution of Tyrosinase family genes, indispensible for melanogenesis, in the anural, unpigmented Molgula occulta and in the tailed, pigmented Molgula oculata by using phylogenetic, developmental and molecular approaches. ResultsWe performed an evolutionary reconstruction of the tunicate Tyrosinase gene family: in particular, we found that M. oculata possesses genes predicted to encode one Tyrosinase (Tyr) and three Tyrosinase-related proteins (Tyrps) while M. occulta has only Tyr and Tyrp.a pseudogenes that are not likely to encode functional proteins. Analysis of Tyr sequences from various M. occulta individuals indicates that different alleles independently acquired frameshifting short indels and/or larger mobile genetic element insertions, resulting in pseudogenization of the Tyr locus. In M. oculata, Tyr is expressed in presumptive pigment cell precursors as in the model tunicate Ciona robusta . Furthermore, a M. oculata Tyr reporter gene construct was active in the pigment cell precursors of C. robusta embryos, hinting at conservation of the regulatory network underlying Tyr expression in tunicates. In contrast, we did not observe any expression of the Tyr pseudogene in M. occulta embryos. Similarly, M. occulta Tyr allele expression was not rescued in pigmented interspecific M. occulta × M. oculata hybrid embryos, suggesting deleterious mutations also to its cis -regulatory sequences. However, in situ hybridization for transcripts from the M. occulta Tyrp.a pseudogene revealed its expression in vestigial pigment cell precursors in this species. ConclusionsWe reveal a complex evolutionary history of the melanogenesis pathway in tunicates, characterized by distinct gene duplication and loss events. Our expression and molecular data support a tight correlation between pseudogenization of Tyrosinase family members and the absence of pigmentation in the immotile larvae of M. occulta . These results suggest that relaxation of purifying selection has resulted in the loss of sensory organ-associated melanocytes and core genes in the melanogenesis biosynthetic pathway in M. occulta.
机译:背景分析具有不同发育模式的近缘物种有助于研究分子水平上的生理,解剖和行为特征的进化意义。特质丧失的许多例子在生活在黑暗环境中的后生动物种群中是已知的。被膜是脊椎动物的最亲近的近亲,通常表现出具有不同的活动幼虫和无柄成虫阶段的生命周期。运动幼虫的神经系统包含黑色素化细胞,该细胞与地理定位和光感器官相关。已经提出这些与脊椎动物神经c来源的黑素细胞同源。可能是由于生态适应了不同的生境,所以Molgulidae家族的几种被膜有幼虫(无尾),无法发育与感觉器官相关的黑素细胞。在这里,我们通过系统发育,发育和分子方法研究了在无色素的耳神经和无尾的尾眼眼中黑色素生成所必需的酪氨酸酶家族基因的进化。结果我们对被膜的酪氨酸酶基因家族进行了进化重建:特别是,我们发现眼虫M.occulata具有预测编码一种酪氨酸酶(Tyr)和三种酪氨酸酶相关蛋白(Tyrps)的基因,而隐球菌仅具有Tyr和Tyrp。不太可能编码功能蛋白的假基因。对来自各种隐球菌个体的Tyr序列的分析表明,不同的等位基因独立地获得移码的短插入缺失和/或较大的可移动遗传元件插入,从而导致Tyr基因座的假基因化。在鼠疫分枝杆菌中,Tyr在假定的色素细胞前体中表达,就像模型被膜Cionarobusta一样。此外,一种食虫分枝杆菌Tyr报告基因构建体在罗布斯梭菌胚胎的色素细胞前体中具有活性,这暗示了被膜中Tyr表达的调控网络的保守性。相比之下,我们没有发现隐球菌胚胎中Tyr假基因的任何表达。同样,隐色的M. occulta×M. oculata杂种胚中也无法挽救隐球菌Tyr等位基因的表达,这表明其顺式调控序列也发生了有害突变。但是,原位杂交隐球菌Tyrp.pseudo基因的转录本显示其在该物种的残留色素细胞前体中表达。结论我们揭示了被膜黑色素生成途径的复杂进化史,其特征在于独特的基因重复和丢失事件。我们的表达和分子数据支持酪氨酸酶家族假发生与隐孢子虫幼虫色素缺乏的紧密联系。这些结果表明,纯化选择的放松导致了隐球菌黑色素生成生物合成途径中感觉器官相关的黑色素细胞和核心基因的丢失。

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