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K10在果蝇卵和胚胎背腹极性建立中的调控功能。

A regulatory function for K10 in the establishment of dorsoventral polarity in the Drosophila egg and embryo.

作者信息

Forlani S, Ferrandon D, Saget O, Mohier E

机构信息

Institut Jacques Monod, CNRS, Paris, France.

出版信息

Mech Dev. 1993 May;41(2-3):109-20. doi: 10.1016/0925-4773(93)90041-u.

Abstract

Several lines of evidence suggest that the origin of pattern formation of Drosophila embryos must be traced back to oogenesis, to the polarity of the egg chamber. A few early-acting genes, K10, top, grk and cni, have been identified which are assumed to function in a signal transduction process between the germline oocyte and the somatic follicle cells, during which the egg chamber acquires a dorsoventral polarity. K10 has been cloned and was shown to encode a putative transcription factor specifically acting in the oocyte nucleus. In order to characterize further the function of K10, we have analyzed its genetic interactions with grk, top and cni. We show that grk behaves as a dominant partial suppressor of K10. Analysis of the rescuing process of the K10 phenotype by grk shows that: (1) K10 is not indispensable for the establishment of dorsoventral polarity of the egg chamber, since its lack of function can be compensated for by reducing the grk wild-type copy number; (2) grk function is highly dose-sensitive; (3) the rescue process shows an anteroposterior effect suggesting that K10 may also interact with genes involved in anteroposterior pattern formation. These results are compatible with a model in which grk is a dorsalizing signal emanating from the oocyte nucleus, whose level of expression is regulated negatively by the K10 product.

摘要

多条证据表明,果蝇胚胎模式形成的起源必须追溯到卵子发生过程,即卵室的极性。已经鉴定出一些早期起作用的基因,如K10、top、grk和cni,它们被认为在生殖系卵母细胞和体细胞滤泡细胞之间的信号转导过程中发挥作用,在此过程中卵室获得背腹极性。K10已被克隆,并显示编码一种特异性作用于卵母细胞核的假定转录因子。为了进一步表征K10的功能,我们分析了它与grk、top和cni的遗传相互作用。我们发现grk表现为K10的显性部分抑制因子。对grk拯救K10表型过程的分析表明:(1)K10对于卵室背腹极性的建立并非不可或缺,因为其功能缺失可通过减少grk野生型拷贝数来补偿;(2)grk功能对剂量高度敏感;(3)拯救过程显示出前后效应,这表明K10可能也与参与前后模式形成的基因相互作用。这些结果与一个模型相符,即grk是一种从卵母细胞核发出的背化信号,其表达水平受到K10产物的负调控。

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