Emerald B Starling, Curtiss Jennifer, Mlodzik Marek, Cohen Stephen M
Developmental Biology Programme, European Molecular Biology Laboratory, Meyerhofstrasse 1, 69117 Heidelberg, Germany.
Development. 2003 Mar;130(6):1171-80. doi: 10.1242/dev.00323.
Legs and antennae are considered to be homologous appendages. The fundamental patterning mechanisms that organize spatial pattern are conserved, yet appendages with very different morphology develop. A genetic hierarchy for specification of antennal identity has been partly elucidated. We report identification of a novel family of genes with roles in antennal development. The distal antenna (dan) and distal antenna-related (danr) genes encode novel nuclear proteins that are expressed in the presumptive distal antenna, but not in the leg imaginal disc. Ectopic expression of dan or danr causes partial transformation of distal leg structure toward antennal identity. Mutants that remove dan and danr activity cause partial transformation of antenna toward leg identity. Therefore we suggest that dan and danr contribute to differentiation of antenna-specific characteristics. Antenna-specific expression of dan and danr depends on a regulatory hierarchy involving homothorax and Distal-less, as well as cut and spineless. We propose that dan and danr are effector genes that act downstream of these genes to control differentiation of distal antennal structures.
腿和触角被认为是同源附肢。组织空间模式的基本模式形成机制是保守的,但却发育出了形态非常不同的附肢。触角身份特异性的遗传层次结构已部分阐明。我们报告鉴定出一个在触角发育中起作用的新基因家族。远端触角(dan)和远端触角相关(danr)基因编码新的核蛋白,这些蛋白在假定的远端触角中表达,但不在腿部成虫盘表达。dan或danr的异位表达会导致远端腿部结构向触角身份的部分转变。去除dan和danr活性的突变体导致触角向腿部身份的部分转变。因此,我们认为dan和danr有助于触角特异性特征的分化。dan和danr的触角特异性表达依赖于一个涉及同胸节和无翅、以及切割和无脊椎的调控层次结构。我们提出,dan和danr是效应基因,在这些基因的下游起作用,以控制远端触角结构的分化。