Gavin-Smyth Jackie, Ferguson Edwin L
a Department of Molecular Genetics and Cell Biology ; University of Chicago ; Chicago , IL USA.
Fly (Austin). 2014;8(3):170-5. doi: 10.4161/19336934.2014.983385.
We recently uncovered a novel genetic mechanism that generates the phenotypic uniformity, or canalization, of BMP signaling and cell fate specification during patterning of the dorsal-ventral (D/V) axis in D. melanogaster embryos. We went on to show that other wild-type Drosophila species lack this canalizing genetic circuitry and, consequently, have non-robust D/V patterning. In this review, we propose molecular mechanisms that may give rise to stereotyped BMP signaling, and we identify an additional species that could have decanalized D/V patterning. Extension of these analyses could in turn help explain why canalization is not a universal necessity for species survival.
我们最近发现了一种新的遗传机制,该机制在黑腹果蝇胚胎背腹(D/V)轴模式形成过程中产生BMP信号传导和细胞命运特化的表型一致性,即稳向化。我们接着表明,其他野生型果蝇物种缺乏这种稳向化遗传回路,因此具有不稳定的D/V模式。在这篇综述中,我们提出了可能导致刻板BMP信号传导的分子机制,并确定了另一个可能具有去稳向化D/V模式的物种。这些分析的扩展反过来可能有助于解释为什么稳向化并非物种生存的普遍必要条件。