Finnerty J R, Martindale M Q
Department of Organismal Biology and Anatomy, University of Chicago, Illinois 60637, USA.
Biol Bull. 1997 Aug;193(1):62-76. doi: 10.2307/1542736.
Homeobox genes belong to a phylogenetically widespread family of regulatory genes that play important roles in pattern formation and cell-fate specification in several model systems (e.g., Drosophila, mouse, and C. elegans). Although the evolution of many classes of homeobox genes predates the diversification of the Bilateria, comparatively little is known about homeobox genes in outgroups to the Bilateria, such as the Cnidaria. We used the polymerase chain reaction to recover 12 partial homeoboxes from 2 species of sea anemones, Metridium senile and Nematostella vectensis (phylum Cnidaria; class Anthozoa). These homeoboxes appear to represent 9 distinct, mutually paralogous homeobox genes, 5 of which belong to previously identified cnidarian homeobox classes, and 4 of which appear to represent previously unidentified classes. The evolutionary relationships between the homeodomains of sea anemones and of bilaterian animals were assessed through database searches and phylogenetic analyses. As many as 5 of the anemone homeoboxes may belong to the Hox class, which suggests that the Hox gene complement of cnidarians is larger than previously expected. Homologs of the even-skipped gene of Drosophila were also identified in both Metridium and Nematostella.
同源异型框基因属于一个在系统发育上广泛分布的调控基因家族,在多个模式生物系统(如果蝇、小鼠和秀丽隐杆线虫)的模式形成和细胞命运特化中发挥重要作用。尽管许多类同源异型框基因的进化早于两侧对称动物的分化,但对于两侧对称动物的外类群(如刺胞动物门)中的同源异型框基因,我们了解得相对较少。我们利用聚合酶链反应从两种海葵(老年细指海葵和星状海葵,均属于刺胞动物门珊瑚纲)中获得了12个部分同源异型框。这些同源异型框似乎代表了9个不同的、相互平行的同源异型框基因,其中5个属于先前已鉴定的刺胞动物同源异型框类别,另外4个似乎代表了先前未鉴定的类别。通过数据库搜索和系统发育分析评估了海葵和两侧对称动物同源结构域之间的进化关系。多达5个海葵同源异型框可能属于Hox类别,这表明刺胞动物的Hox基因组成比先前预期的要大。在老年细指海葵和星状海葵中还鉴定出了果蝇成对规则基因的同源物。