Buresi Auxane, Baratte Sébastien, Da Silva Corinne, Bonnaud Laure
Muséum National d'Histoire Naturelle (MNHN), Département Milieux et Peuplements Aquatiques (DMPA), UMR Biologie des ORganismes et Ecosystèmes Aquatiques (BOREA), MNHN CNRS 7208, IRD 207, UPMC, Paris, France.
Muséum National d'Histoire Naturelle (MNHN), Département Milieux et Peuplements Aquatiques (DMPA), UMR Biologie des ORganismes et Ecosystèmes Aquatiques (BOREA), MNHN CNRS 7208, IRD 207, UPMC, Paris, France; Université Paris Sorbonne, Paris 4, France.
Gene Expr Patterns. 2012 Mar-Apr;12(3-4):109-16. doi: 10.1016/j.gep.2012.02.001. Epub 2012 Feb 18.
The origin of cerebral structures is a major issue in both developmental and evolutionary biology. Among Lophotrochozoans, cephalopods present both a derived nervous system and an original body plan, therefore they constitute a key model to study the evolution of nervous system and molecular processes that control the neural organization. We characterized a partial sequence of an ortholog of otx2 in Sepia officinalis embryos, a gene specific to the anterior nervous system and eye development. By in situ hybridization, we assessed the expression pattern of otx2 during S. officinalis organogenesis and we showed that otx is expressed (1) in the eyes, from early to late developmental stages as observed in other species (2) in the nervous system during late developmental stages. The otx ortholog does not appear to be required for the precocious emergence of the nervous ganglia in cephalopods and is later expressed only in the most anterior ganglia of the future brain. Finally, otx expression becomes restricted to localized part of the brain, where it could be involved in the functional specification of the central nervous system of S. officinalis. These results suggest a conserved involvement of otx in eye maturation and development of the anterior neural structures in S. officinalis.
脑结构的起源是发育生物学和进化生物学中的一个主要问题。在冠轮动物中,头足类动物具有独特的神经系统和原始的身体结构,因此它们构成了研究神经系统进化以及控制神经组织的分子过程的关键模型。我们鉴定了乌贼胚胎中otx2直系同源基因的部分序列,该基因对头前部神经系统和眼睛发育具有特异性。通过原位杂交,我们评估了otx2在乌贼器官发生过程中的表达模式,结果表明otx在以下部位表达:(1)眼睛,从发育早期到晚期,这与其他物种的情况一致;(2)在发育后期的神经系统中。otx直系同源基因似乎不是头足类动物神经节早熟出现所必需的,且后期仅在未来大脑最前部的神经节中表达。最后,otx的表达局限于大脑的局部区域,可能参与了乌贼中枢神经系统的功能特化。这些结果表明otx在乌贼眼睛成熟和前部神经结构发育中具有保守作用。