首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >FoxA FoxA expression pattern in two polychaete species, Alitta virens Alitta virens and Platynereis dumerilii Platynereis dumerilii : Examination of the conserved key regulator of the gut development from cleavage through larval life, postlarval growth, and regeneration
【24h】

FoxA FoxA expression pattern in two polychaete species, Alitta virens Alitta virens and Platynereis dumerilii Platynereis dumerilii : Examination of the conserved key regulator of the gut development from cleavage through larval life, postlarval growth, and regeneration

机译:Foxa Foxa表达模式在两种多层物种中,Alitta Virens Alitta Virens和Platynereis Dumerilii Platynereis Dumerilii:通过幼虫生命,后比较生长和再生来检查肠道肠道发育的保守关键调节因子

获取原文
获取原文并翻译 | 示例
           

摘要

Background foxA orthologs are involved in various processes from embryo patterning to regulation of metabolism. Since foxA conserved role in the development of the gut of errant annelids has never been thoroughly studied, we used a candidate gene approach to unravel the molecular profile of the alimentary canal in two closely related nereid worms with a trochophore‐type lecithotrophic larva. Results The character of foxA expression in the two polychaetes was similar but not identical. The genes were successively activated first in blastoporal cells, then in the stomodeum, the midgut, and hindgut primordia, and in the cells of central and peripheral nervous system. Before the start of active feeding of nectochaetes, we observed a short phase of foxA expression in the entire digestive tract. After amputation of posterior segments, foxA expression was established de novo in the new terminal part of the intestine, and then in the developing hindgut and the anus. Conclusions We discovered an early marker of endoderm formation previously unknown in errant annelids. Its expression dynamics provided valuable insights into the gut development. Comparative analysis of foxA activity suggests its primary role in gastrulation morphogenesis independently of its type and in midgut and foregut specification. Developmental Dynamics 248:728–743, 2019. ? 2018 Wiley Periodicals, Inc.
机译:背景技术FOXA Orthologs涉及来自胚胎图案的各种过程,以调节代谢。由于Foxa在肠道肠道的发展中的作用中从未彻底研究过,因此我们使用候选基因方法在两个密切相关的整体蠕虫中揭开消化道的分子曲线,其中杂草型卵磷脂植物幼虫。结果两种多层中FOXA表达的特征相似但不相同。首先在囊孔细胞中连续激活基因,然后在骨科,中肠和后肠原基中,以及中央和周围神经系统的细胞中。在积极喂养Nectochaetes开始之前,我们观察到整个消化道中的狐疮表达的短期。在后段截肢后,在肠道的新末端部分中建立了Foxa表达,然后在开发后肠和肛门中建立了De Novo。结论我们发现了先前未知的内胚层形成的早期标记。其表达动态为肠道发育提供了有价值的见解。 FOXA活性的比较分析表明其在粘液形态发生中的主要作用,独立于其类型和中肠和预备规范。发展动力学248:728-743,2019。? 2018年Wiley期刊,Inc。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号