Bucher Gregor, Farzana Laila, Brown Susan J, Klingler Martin
Department Biologie II, Ludwig-Maximilian-Universität, München Luisenstrasse 14, 80333 München, Germany.
Evol Dev. 2005 Mar-Apr;7(2):142-9. doi: 10.1111/j.1525-142X.2005.05016.x.
Anterior morphogens have long been postulated to function in early pattern formation in several insect taxa. Genetic studies in Drosophila revealed that the Bicoid protein performs as such in the fly. Maternally provided bicoid (bcd) mRNA is localized at the anterior pole of the oocyte and, upon fertilization, acts as the source of a morphogenetic gradient of Bicoid protein. Despite its central role in Drosophila, it is believed that bicoid arose rather recently during dipteran evolution through duplication of the Hox3 ortholog zen. Here we show that in the red flour beetle Tribolium castaneum, RNAs of the homologs of the Drosophila transcription factors eagle (Tc'eagle) and pangolin (Tc'pan) are maternally localized at the anterior pole of the egg. It is possible that underlying mechanisms for the anterior localization of maternal RNAs evolved independently in the two clades. However, considering the complexity of the process in Drosophila, it is more tempting to speculate that the molecular machinery evolved only once during insect evolution. Under this assumption, it was present before bicoid evolved as an anterior morphogen. To become concentrated at the anterior pole of the egg bicoid may only have had to acquire a signal sequence that was recognized by the preexisting localization machinery. Although we were not able to demonstrate a function in early embryogenesis for Tc'eagle or Tc'pan, our findings suggest that other factors likely function as anterior determinants in Tribolium, and other nondipteran insects.
长期以来,人们一直假定前部形态发生素在几种昆虫类群的早期模式形成中发挥作用。果蝇的遗传学研究表明,双尾蛋白在果蝇中具有这样的功能。由母体提供的双尾(bcd)mRNA定位于卵母细胞的前极,受精后,作为双尾蛋白形态发生梯度的来源。尽管双尾在果蝇中起着核心作用,但人们认为双尾在双翅目进化过程中是通过同源异形基因Hox3直系同源基因zen的复制而最近才出现的。在这里,我们表明,在赤拟谷盗中,果蝇转录因子鹰(Tc'eagle)和穿山甲(Tc'pan)同源物的RNA由母体定位于卵的前极。母体RNA在前部定位的潜在机制有可能在这两个进化枝中独立进化。然而,考虑到果蝇中这一过程的复杂性,更诱人的推测是,分子机制在昆虫进化过程中只进化了一次。在这个假设下,它在双尾作为前部形态发生素进化之前就已经存在了。为了集中在卵的前极,双尾可能只需要获得一个被预先存在的定位机制识别的信号序列。尽管我们无法证明Tc'eagle或Tc'pan在早期胚胎发育中的功能,但我们的发现表明,其他因素可能在拟谷盗和其他非双翅目昆虫中作为前部决定因素发挥作用。