Buffry Alexandra D, McGregor Alistair P
Department of Biological and Medical Sciences, Oxford Brookes University, Gipsy Lane, Oxford OX3 0BP, UK.
J Dev Biol. 2022 Feb 18;10(1):13. doi: 10.3390/jdb10010013.
Hox genes function early in development to determine regional identity in animals. Consequently, the loss or gain of Hox gene expression can change this identity and cause homeotic transformations. Over 20 years ago, it was observed that the role of Hox genes in patterning animal body plans involves the fine-scale regulation of cell fate and identity during development, playing the role of 'micromanagers' as proposed by Michael Akam in key perspective papers. Therefore, as well as specifying where structures develop on animal bodies, Hox genes can help to precisely sculpt their morphology. Here, we review work that has provided important insights about the roles of Hox genes in influencing cell fate during post-embryonic development in to regulate fine-scale patterning and morphology. We also explore how this is achieved through the regulation of Hox genes, specific co-factors and their complex regulation of hundreds of target genes. We argue that further investigating the regulation and roles of Hox genes in post-embryonic development has great potential for understanding gene regulation, cell fate and phenotypic differentiation more generally.
Hox基因在发育早期发挥作用,以确定动物的区域特征。因此,Hox基因表达的缺失或增加会改变这种特征,并导致同源异型转化。20多年前,人们观察到Hox基因在构建动物身体结构中的作用涉及发育过程中细胞命运和特征的精细调节,正如迈克尔·阿坎在关键观点论文中所提出的,起着“微观管理者”的作用。因此,除了确定动物身体上结构的发育位置外,Hox基因还可以帮助精确塑造其形态。在这里,我们回顾了一些研究工作,这些工作为Hox基因在昆虫胚胎后期发育过程中影响细胞命运、调节精细模式形成和形态方面的作用提供了重要见解。我们还探讨了这是如何通过对Hox基因、特定辅助因子及其对数百个靶基因的复杂调控来实现的。我们认为,进一步研究Hox基因在昆虫胚胎后期发育中的调控和作用,对于更全面地理解基因调控、细胞命运和表型分化具有巨大潜力。