Zaffran S, Küchler A, Lee H H, Frasch M
Department of Biochemistry and Molecular Biology, Mount Sinai School of Medicine, New York, New York 10029, USA.
Genes Dev. 2001 Nov 1;15(21):2900-15. doi: 10.1101/gad.917101.
The subdivision of the lateral mesoderm into a visceral (splanchnic) and a somatic layer is a crucial event during early mesoderm development in both arthropod and vertebrate embryos. In Drosophila, this subdivision leads to the differential development of gut musculature versus body wall musculature. Here we report that biniou, the sole Drosophila representative of the FoxF subfamily of forkhead domain genes, has a key role in the development of the visceral mesoderm and the derived gut musculature. biniou expression is activated in the trunk visceral mesoderm primordia downstream of dpp, tinman, and bagpipe and is maintained in all types of developing gut muscles. We show that biniou activity is essential for maintaining the distinction between splanchnic and somatic mesoderm and for differentiation of the splanchnic mesoderm into midgut musculature. biniou is required not only for the activation of differentiation genes that are expressed ubiquitously in the trunk visceral mesoderm but also for the expression of dpp in parasegment 7, which governs proper midgut morphogenesis. Activation of dpp is mediated by specific Biniou binding sites in a dpp enhancer element, which suggests that Biniou serves as a tissue-specific cofactor of homeotic gene products in visceral mesoderm patterning. Based upon these and other data, we propose that the splanchnic mesoderm layers in Drosophila and vertebrate embryos are homologous structures whose development into gut musculature and other visceral organs is critically dependent on FoxF genes.
外侧中胚层分为脏层(内脏的)和体壁层是节肢动物和脊椎动物胚胎早期中胚层发育过程中的一个关键事件。在果蝇中,这种分化导致肠道肌肉组织与体壁肌肉组织的差异发育。在此,我们报道biniou,即叉头结构域基因FoxF亚家族在果蝇中的唯一代表,在内脏中胚层和衍生的肠道肌肉组织发育中起关键作用。biniou的表达在dpp、tinman和bagpipe下游的躯干内脏中胚层原基中被激活,并在所有类型的发育中的肠道肌肉中维持。我们表明,biniou活性对于维持脏层和体壁中胚层之间的区别以及脏层中胚层分化为中肠肌肉组织至关重要。biniou不仅是躯干内脏中胚层中普遍表达的分化基因激活所必需的,也是第7副节中dpp表达所必需的,dpp控制着中肠的正常形态发生。dpp的激活由dpp增强子元件中的特定Biniou结合位点介导,这表明Biniou在内脏中胚层模式形成中作为同源异型基因产物的组织特异性辅因子发挥作用。基于这些及其他数据,我们提出果蝇和脊椎动物胚胎中的脏层中胚层是同源结构,其发育为肠道肌肉组织和其他内脏器官严重依赖于FoxF基因。