Choi K W, Mozer B, Benzer S
Division of Biology, California Institute of Technology, Pasadena, CA 91125, USA.
Proc Natl Acad Sci U S A. 1996 Jun 11;93(12):5737-41. doi: 10.1073/pnas.93.12.5737.
In each facet of the Drosophila compound eye, a cluster of photoreceptor cells assumes an asymmetric trapezoidal pattern. These clusters have opposite orientations above and below an equator, showing global dorsoventral mirror symmetry. However, in the mutant spiny legs, the polarization of each cluster appears to be random, so that no equator is evident. The apparent lack of an equator suggests that spiny legs+ may be involved in the establishment of global dorsoventral identity that might be essential for proper polarization of the photoreceptor clusters. Alternatively, a global dorsoventral pattern could be present, but spiny legs+ may be required for local polarization of individual clusters. Using an enhancer trap strain in which white+ gene expression is restricted to the dorsal field, we show that white+ expression in spiny legs correctly respects dorsoventral position even in facets with inappropriate polarizations; the dorsoventral boundary is indeed present, whereas the mechanism for polarization is perturbed. It is suggested that the boundary is established before the action of spiny legs+ by an independent mechanism.
在果蝇复眼的每个小眼面中,一群光感受器细胞呈现出不对称的梯形模式。这些细胞簇在赤道上方和下方具有相反的方向,呈现出整体的背腹镜像对称。然而,在突变体“多刺腿”中,每个细胞簇的极化似乎是随机的,因此没有明显的赤道。赤道的明显缺失表明“多刺腿”基因可能参与了整体背腹身份的建立,这对于光感受器细胞簇的正确极化可能至关重要。或者,可能存在整体的背腹模式,但单个细胞簇的局部极化可能需要“多刺腿”基因。利用一种增强子陷阱品系,其中白色基因的表达仅限于背侧区域,我们发现即使在极化不合适的小眼面中,“多刺腿”中的白色基因表达也能正确反映背腹位置;背腹边界确实存在,而极化机制受到了干扰。有人认为,边界是在“多刺腿”基因起作用之前通过独立机制建立的。