Shinzato Chuya, Iguchi Akira, Hayward David C, Technau Ulrich, Ball Eldon E, Miller David J
ARC Centre of Excellence for Coral Reef Studies and Comparative Genomics Centre, James Cook University, Townsville, Queensland 4811, Australia.
BMC Evol Biol. 2008 Nov 12;8:311. doi: 10.1186/1471-2148-8-311.
Sox genes encode transcription factors that function in a wide range of developmental processes across the animal kingdom. To better understand both the evolution of the Sox family and the roles of these genes in cnidarians, we are studying the Sox gene complement of the coral, Acropora millepora (Class Anthozoa).
Based on overall domain structures and HMG box sequences, the Acropora Sox genes considered here clearly fall into four of the five major Sox classes. AmSoxC is expressed in the ectoderm during development, in cells whose morphology is consistent with their assignment as sensory neurons. The expression pattern of the Nematostella ortholog of this gene is broadly similar to that of AmSoxC, but there are subtle differences--for example, expression begins significantly earlier in Acropora than in Nematostella. During gastrulation, AmSoxBb and AmSoxB1 transcripts are detected only in the presumptive ectoderm while AmSoxE1 transcription is restricted to the presumptive endoderm, suggesting that these Sox genes might play roles in germ layer specification. A third type B Sox gene, AmSoxBa, and a Sox F gene AmSoxF also have complex and specific expression patterns during early development. Each of these genes has a clear Nematostella ortholog, but in several cases the expression pattern observed in Acropora differs significantly from that reported in Nematostella.
These differences in expression patterns between Acropora and Nematostella largely reflect fundamental differences in developmental processes, underscoring the diversity of mechanisms within the anthozoan Sub-Class Hexacorallia (Zoantharia).
Sox基因编码转录因子,在整个动物界的广泛发育过程中发挥作用。为了更好地理解Sox家族的进化以及这些基因在刺胞动物中的作用,我们正在研究珊瑚鹿角珊瑚(珊瑚虫纲)的Sox基因组成。
基于整体结构域结构和HMG框序列,这里所考虑的鹿角珊瑚Sox基因显然属于五个主要Sox类别中的四个。AmSoxC在发育过程中在外胚层表达,在形态与其作为感觉神经元的分类一致的细胞中表达。该基因在星状海葵中的直系同源基因的表达模式与AmSoxC大致相似,但存在细微差异——例如,鹿角珊瑚中的表达开始时间比星状海葵中的明显更早。在原肠胚形成过程中,仅在假定的外胚层中检测到AmSoxBb和AmSoxB1转录本,而AmSoxE1转录仅限于假定的内胚层,这表明这些Sox基因可能在胚层特化中发挥作用。第三个B类Sox基因AmSoxBa和一个Sox F基因AmSoxF在早期发育过程中也具有复杂而特定的表达模式。这些基因中的每一个都有一个明确的星状海葵直系同源基因,但在几种情况下,在鹿角珊瑚中观察到的表达模式与在星状海葵中报道的有显著差异。
鹿角珊瑚和星状海葵之间这些表达模式的差异很大程度上反映了发育过程中的根本差异,突出了六放珊瑚亚纲(花水母亚纲)内机制的多样性。